Preprints

  1. Xi, Y., Li, H. Y., Li, G., Su, Q., Mao, K., Xu, B., Hao, Y., Fang, N. X., & Cui, Y. (2025). Tailoring 4H-SiC Surface Electronic States by Atomic-Layer Deposition for Ideal Peta-Ohm Resistors. https://arxiv.org/abs/2407.10208
  2. Qu, S., Yang, M., Huang, S., Liu, S., Dong, E., Li, H. Y., Sheng, P., Abrahams, I. D., & Fang, N. X. (2025). Duality Symmetry in Causality Constraints for Enhanced Acoustic Absorption. https://arxiv.org/abs/2503.18740

Refereed journal articles

  1. Choi, S. H., Shin, S., Kim, W. Y., Lee, J. M., Park, S. R., Kim, H., Woo, K., Kwon, S., & ... (2025). Scalable multistep roll‐to‐roll printing of multifunctional and robust reentrant microcavity surfaces via a wetting‐induced process. Advanced Materials, 37(5), 2411064–2411064.
  2. Liu, C., Yan, X. Y., Li, S., Zhang, H., Deng, B., Fang, N. X., Habibi, Y., Chen, S. C., & ... (2025). A metre-scale vertical origami hydrogel panel for atmospheric water harvesting in Death Valley. Nature Water, 1–9.
  3. Lian, J., Li, W., Yang, L., Li, H., Deng, Q., Zhu, H., Zhang, Y., Fang, N. X., & Wang, L. (2025). Directional water navigation and reallocation in Tillandsia capitata. Proceedings of the National Academy of Sciences, 122(19), 2147483647.
  4. Zhang, J., Zhou, R., Fang, N. X., Deng, W., Zhu, J., & Liu, S. (2025). Experimental Demonstration of Conjugate Structured Illumination Microscopy (c-SIM) for Sensing Deep Subwavelength Perturbations in Background Nanopatterns. ACS Photonics, 12(5), 2710–2719.
  5. Dong, E., Zhang, T., Zhang, J., Su, X., Qu, S., Ye, X., Gao, Z., Gao, C., Hui, J., & ... (2025). Soft Metalens for Broadband Ultrasonic Focusing through Aberration Layers. Nature Communications, 16(1), 308–308.
  6. Yang, M., Qu, S., Fang, N., & Chen, S. (2025). Acoustic blackbody through instability-induced softening. Communications Physics, 8(1), 245–245.
  7. Peng, P., Liu, X., Yang, S., Zhou, R., Deng, H., Gao, L., Fang, N. X., Liu, S., & Zhu, J. (2025). Anomalous photoelectrochemical etching of undoped semiconductor surfaces. Nature Communications, 16(1), 7885–7885.
  8. Su, X., Dong, E., Gao, Z., Zhang, J., Zhang, F., Yang, C., Liu, S., Wang, Z., Fang, N. X., & ... (2025). Holographic sonar imaging via soft meta-structures. Device, 3(6).
  9. Guo, R., Zhang, K., & Fang, N. X. (2025). Wave characteristics and anisotropic homogenization theory of soft matters layered structure. ArXiv Preprint ArXiv:2504., 14271.
  10. Hou, G., Zhang, X., Du, F., Wu, Y., Zhang, X., Lei, Z., Lu, W., Zhang, F., Yang, G., & ... (2024). Self-regulated underwater phototaxis of a photoresponsive hydrogel-based phototactic vehicle. Nature Nanotechnology, 19(1), 77–84.
  11. Liu, Z., Cai, M., Hong, S., Shi, J., Xie, S., Liu, C., Du, H., Morin, J. D., Li, G., Wang, L., & ... (2024). Data-driven inverse design of flexible pressure sensors. Proceedings of the National Academy of Sciences, 121(28), 2147483647.
  12. Chu, H., Xiong, X., Fang, N. X., Wu, F., Jia, R., Peng, R., Wang, M., & Lai, Y. (2024). Matte surfaces with broadband transparency enabled by highly asymmetric diffusion of white light. Science Advances 10 (11), Eadm, 8061.
  13. Carbajo, J., Nam, S. H., & Fang, N. X. (2024). Fabrication of micro-perforated panel (MPP) sound absorbers using digital light processing (DLP) 3D printing technology. Applied Acoustics, 216, 109788–109788.
  14. Qu, S., Yang, M., Wu, T., Xu, Y., Fang, N., & Chen, S. (2024). Analytical modeling of acoustic exponential materials and physical mechanism of broadband anti-reflection. Materials Today Physics, 44, 101421–101421.
  15. Kim, D. H., Nam, S. H., Han, G., Park, S. R., Jeong, G. H., Kim, S., Cho, Y. T., & Fang, N. X. (2024). Robust catalyst 3D microarchitectures by digital light printing with ceramic particle-polymer composites. APL Materials, 12(2).
  16. Liu, C., Ma, C., Lai, Y., & Fang, N. X. (2024). Ultra-broadband illusion acoustics for space and time camouflages. Nature Communications, 15(1), 8046–8046.
  17. Dong, E., Zhang, J., Su, X., Gao, Z., Yang, C., Wang, Z., Fang, N. X., & Zhang, Y. (2024). Acoustic soft metacollimator by broadband digital phase encoding. Physical Review Applied, 22(1), 14065–14065.
  18. Dong, E., Zhang, T., Zhang, J., Su, X., Qu, S., Ye, X., Gao, Z., Gao, C., Hui, J., & ... (2024). Ultra-broadband transcranial ultrasound by acoustic phase-only hologram with a tungsten metalens. 2024 Photonics &Electromagnetics Research Symposium (PIERS), 1–9.
  19. Zhao, X., Jiang, H., Liu, J., Liu, C., Deng, H., Zhou, R., Fang, N. X., Liu, S., & Zhu, J. (2024). Direct Monitoring of Nanoscale Deformations across All Layers in Three-Dimensional Stacked Structures. ACS Photonics, 11(9), 3672–3679.
  20. Fang, N., Handler, J., & Kim, S. (2024). Systems, devices, and methods for kaleidoscopic 3D printing. US Patent 12,128,610.
  21. Yang, M., Qu, S., Fang, N., & Chen, S. (2024). Acoustic Blackbody Absorption: Transcending Causality Limits through Instability-Induced Softness. ArXiv Preprint ArXiv:2410., 6859.
  22. Ghanbarzadeh-Dagheyan, A., Dong, E., & Fang, N. X. (2024). A Meta Matching Layer to Image Behind Calcified Plaques. 2024 IEEE Ultrasonics, Ferroelectrics, and Frequency Control Joint Symposium ….
  23. Kaynia, N., Fang, N. X., & Boyce, M. C. (2024). Soft‐Layered Composites with Wrinkling‐Activated Multi‐Linear Elastic Behavior, Stress Mitigation, and Enhanced Strain Energy Storage. Advanced Engineering Materials, 2400750.
  24. Xi, Y., Li, H. Y., Li, G., Su, Q., Mao, K., Xu, B., Hao, Y., Fang, N. X., & Cui, Y. (2024). Achieving Peta-Ohm Resistance for Semi-Insulating 4H-SiC Devices by Atomic Layer Deposition. ArXiv Preprint ArXiv:2407., 10208.
  25. Mok, R., Li, C., Comeau, B., Welsh, E., Fang, N. X., & Liu, J. (2024). An Educational Simulation for Understanding Atomic Force Microscopy Image Artifacts. 2024 ASEE Annual Conference &Exposition.
  26. Qu, S., Dong, E., & Fang, N. (2024). Theory of Electromagnetic Wave Scattering and Dispersion in Exponential Materials. 2024 Photonics &Electromagnetics Research Symposium (PIERS), 1–7.
  27. Qu, S., Yang, M., & Fang, N. (2024). Engineering Boundary Impedance for Quality Factor Control by Customizable Acoustic Metamaterials. 2024 Photonics &Electromagnetics Research Symposium (PIERS), 1–6.
  28. Dong, E., Cao, P., Zhang, J., Zhang, S., Fang, N. X., & Zhang, Y. (2023). Underwater acoustic metamaterials. National Science Review 10 (6), Nwac, 246.
  29. Wang, D., Wang, J., Shen, Z., Jiang, C., Zou, J., Dong, L., Fang, N. X., & Gu, G. (2023). Soft actuators and robots enabled by additive manufacturing. Annual Review of Control, Robotics, and Autonomous Systems, 6(1), 31–63.
  30. Qu, S., Yang, M., Xu, Y., Xiao, S., & Fang, N. X. (2023). Reverberation time control by acoustic metamaterials in a small room. Building and Environment, 244, 110753–110753.
  31. Kim, W. Y., Seo, B. W., Lee, S. H., Lee, T. G., Kwon, S., Chang, W. S., Nam, S. H., & ... (2023). Quasi-seamless stitching for large-area micropatterned surfaces enabled by Fourier spectral analysis of moiré patterns. Nature Communications, 14(1), 2202–2202.
  32. Liu, C., Wang, S., Feng, S. P., & Fang, N. X. (2023). Portable green energy out of the blue: hydrogel-based energy conversion devices. Soft Science 3, Http://Dx.doi.org/10.20517/Ss.2022., 32.
  33. Zhang, L., Du, H., Sun, X., Cheng, F., Lee, W., Li, J., Dai, G., Fang, N. X., & Liu, Y. (2023). 3D printing of interpenetrating network flexible hydrogels with enhancement of adhesiveness. ACS Applied Materials &Interfaces, 15(35), 41892–41905.
  34. Yang, G., Nam, S. H., Han, G., Fang, N. X., & Lee, D. (2023). Achieving Fast Oxygen Reduction on Oxide Electrodes by Creating 3D Multiscale Micro-Nano Structures for Low-Temperature Solid Oxide Fuel Cells. ACS Applied Materials &Interfaces, 15(43), 50427–50436.
  35. Carbajo, J., Molina, J. M., Kim, S., Maiorano, L. P., Mosanenzadeh, S. G., & Fang, N. X. (2023). Design of replicated open-pore aluminium cellular materials with a non-stochastic structure for sound absorption applications. Metals and Materials International, 29(4), 1007–1018.
  36. Shen, C., Rohde, C., Cushing, C. W., Li, J., Tan, Z. J., Du, H., Peng, X., Wilson, P. S., & ... (2023). Anisotropic metallic microlattice structures for underwater operations. Advanced Engineering Materials, 25(6), 2201294–2201294.
  37. Jagielska, A., Radzwill, K., Espinosa-Hoyos, D., Yang, M., Kowsari, K., & ... (2023). Artificial axons as a biomimetic 3D myelination platform for the discovery and validation of promyelinating compounds. Scientific Reports, 13(1), 19529–19529.
  38. Nagami, T., Miura, S., Miyakawa, T., Sawada, H., Minami, K., Ichikawa, A., & ... (2023). Lightweight stiffness-dominated acoustic metamaterial barrier for low-frequency sound. Journal of Applied Physics, 134(5).
  39. Liu, C., Liu, Z., Nam, S. H., Du, H., Zhao, X., & Fang, N. X. (2023). Broadband thermal management using smart cooling films. Available at SSRN, 4315402.
  40. Shusteff, M., Spadaccini, C. M., Fang, N., Panas, R. M., Henriksson, J., Kelly, B., & ... (2023). Multi-beam resin curing system and method for whole-volume additive manufacturing. US Patent 11,701,827.
  41. Hashemi, S. M., Parvizi, S., Baghbanijavid, H., Tan, A. T. L., Nematollahi, M., & ... (2022). Computational modelling of process-structure-property-performance relationships in metal additive manufacturing: A review. International Materials Reviews, 67(1), 1–46.
  42. Liu, C., Wang, S., Wang, X., Mao, J., Chen, Y., Fang, N. X., & Feng, S. P. (2022). Hydrovoltaic energy harvesting from moisture flow using an ionic polymer-hydrogel-carbon composite. Energy &Environmental Science, 15(6), 2489–2498.
  43. Liu, C., Li, Q., Wang, S., Liu, W., Fang, N. X., & Feng, S. P. (2022). Ion regulation in double-network hydrogel module with ultrahigh thermopower for low-grade heat harvesting. Nano Energy, 92, 106738–106738.
  44. Zhang, L., Lee, W., Li, X., Jiang, Y., Fang, N. X., Dai, G., & Liu, Y. (2022). 3D direct printing of mechanical and biocompatible hydrogel meta-structures. Bioactive Materials, 10, 48–55.
  45. Zhang, J., Zhang, T., Dong, E., Zhang, C., Lin, Z., Song, Z., Li, H., Fang, N. X., & ... (2022). Bioinspired hydrogel jellyfish with mechanical flexibility and acoustic transparency. Cell Reports Physical Science, 3(10).
  46. Li, H., Raza, A., Yuan, S., AlMarzooqi, F., Fang, N. X., & Zhang, T. J. (2022). Biomimetic on-chip filtration enabled by direct micro-3D printing on membrane. Scientific Reports, 12(1), 8178–8178.
  47. Kim, S., Nam, S. H., Kim, S., Cho, Y. T., & Fang, N. X. (2022). Low heat capacity 3D hollow microarchitected reactors for thermal and fluid applications. Energies, 15(11), 4073–4073.
  48. Yang, M., Kowsari, K., Myrie, N. O., Espinosa-Hoyos, D., & ..., A. (2022). Additive manufacturing of high aspect-ratio structures with self-focusing photopolymerization. Light- Advanced Manufacturing.
  49. Tan, Z. J., Somjit, V., Toparli, C., Yildiz, B., & Fang, N. (2022). Electronegative metal dopants improve switching variability in resistive switching devices. Physical Review Materials, 6(10), 105002–105002.
  50. She, X., Du, H., Shen, Y., Fang, N. X., & Jin, C. (2022). In Situ Wide-Field Visualization of Palladium Hydrogenation. ACS Applied Materials &Interfaces, 14(36), 41531–41541.
  51. Ngo, M., Welsh, E., Comeau, B., Fang, N., Liu, J., & Studer, K. (2022). Opening Up the Black Box: An Augmented Reality Look into the Scanning Electron Microscope. 2022 ASEE Annual Conference &Exposition.
  52. Kundaliya, D., Li, X., Anc, M., & Fang, N. (2022). Methods, apparatuses, and materials for producing micro-pixelated leds using additive manufacturing. US Patent App. 17/623,795.
  53. Noerenberg, R., Nabarun, R. O. Y., Mosanenzadeh, S. G., & Fang, N. X. (2022). Sound insulation device. US Patent App. 17/756,179.
  54. Ovitigala, N., Comeau, B., Welsh, E., Fang, N., & Liu, J. (2022). Low-Cost Haptics and Visualization to Learn the Atomic Force Microscope Force-Distance Curve. 2022 ASEE Annual Conference &Exposition.
  55. Zhu, P., Du, H., Hou, X., Lu, P., Wang, L., Huang, J., Bai, N., Wu, Z., Fang, N. X., & ... (2021). Skin-electrode iontronic interface for mechanosensing. Nature Communications, 12(1), 4731–4731.
  56. Chen, S., Liu, Z., Du, H., Tang, C., Ji, C. Y., Quan, B., Pan, R., Yang, L., Li, X., Gu, C., & ... (2021). Electromechanically reconfigurable optical nano-kirigami. Nature Communications, 12, 1299–1299.
  57. Liu, C., Shi, J., Zhao, W., Zhou, X., Ma, C., Peng, R., Wang, M., Hang, Z. H., Liu, X., & ... (2021). Three-dimensional soundproof acoustic metacage. Physical Review Letters, 127(8), 84301–84301.
  58. Zou, J., Feng, M., Ding, N., Yan, P., Xu, H., Yang, D., Fang, N. X., Gu, G., & Zhu, X. (2021). Muscle-fiber array inspired, multiple-mode, pneumatic artificial muscles through planar design and one-step rolling fabrication. National Science Review 8 (10), Nwab, 48.
  59. Kim, S., Kim, D. H., Kim, W., Cho, Y. T., & Fang, N. X. (2021). Additive manufacturing of functional microarchitected reactors for energy, environmental, and biological applications. International Journal of Precision Engineering and Manufacturing-Green ….
  60. Kim, D. H., Kim, S., Park, S. R., Fang, N. X., & Cho, Y. T. (2021). Shape-deformed mushroom-like reentrant structures for robust liquid-repellent surfaces. ACS Applied Materials &Interfaces, 13(28), 33618–33626.
  61. Kim, S., Handler, J. J., Cho, Y. T., Barbastathis, G., & Fang, N. X. (2021). Scalable 3D printing of aperiodic cellular structures by rotational stacking of integral image formation. Science Advances 7 (38), Eabh, 1200.
  62. Yu, K., Feng, Z., Du, H., Xin, A., Lee, K. H., Li, K., Su, Y., Wang, Q., Fang, N. X., & ... (2021). Photosynthesis-assisted remodeling of three-dimensional printed structures. Proceedings of the National Academy of Sciences, 118(3), 2016524118.
  63. Carbajo, J., Molina-Jordá, J. M., Maiorano, L. P., & Fang, N. X. (2021). Sound absorption of macro-perforated additively manufactured media. Applied Acoustics, 182, 108204–108204.
  64. Kim, S., Kim, W. Y., Nam, S. H., Shin, S., Choi, S. H., Kim, D. H., Lee, H., Choi, H. J., & ... (2021). Microstructured surfaces for reducing chances of fomite transmission via virus-containing respiratory droplets. ACS Nano, 15(9), 14049–14060.
  65. Kang, I., Pang, S., Zhang, Q., Fang, N., & Barbastathis, G. (2021). Recurrent neural network reveals transparent objects through scattering media. Optics Express, 29(4), 5316–5326.
  66. Sphabmixay, P., Raredon, M. S. B., Wang, A. J. S., Lee, H., Hammond, P. T., Fang, N. X., & ... (2021). High resolution stereolithography fabrication of perfusable scaffolds to enable long-term meso-scale hepatic culture for disease modeling. Biofabrication, 13(4), 45024–45024.
  67. Sahoo, N. R., Dixit, S., Singh, A. K., Nam, S. H., Fang, N. X., & Kumar, A. (2021). High temperature mid-IR polarizer via natural in-plane hyperbolic Van der Waals crystals. Advanced Optical Materials, ArXiv: 2108., 8510.
  68. Kowsari, K., Lee, W., Yoo, S. S., & Fang, N. X. (2021). Scalable visible light 3D printing and bioprinting using an organic light-emitting diode microdisplay. IScience, 24(11).
  69. Cushing, C. W., Wilson, P. S., Haberman, M. R., Shen, C., Li, J., Cummer, S. A., & ... (2021). Characterization of an underwater metamaterial made of aluminum honeycomb panels at low frequencies. The Journal of the Acoustical Society of America, 149(3), 1829–1837.
  70. Viard, N., & Fang, N. (2021). Subwavelength acoustic metamaterial with tunable acoustic absorption. US Patent 11,037,543.
  71. Du, H., Virot, E., Wang, L., Kharchenko, S., Rahman, M. A., Weitz, D. A., & ... (2021). Intersonic Detachment Surface Waves in Elastomer Frictional Sliding. ArXiv Preprint ArXiv:2110., 13425.
  72. Fang, N., & Tan, Z. J. (2021). Techniques for dopant implantation and multilayer oxides for resistive switching devices. US Patent 11,201,285.
  73. Fang, N., Li, X., Liu, C., & Feng, S. P. (2021). Synthesis and Application of Light Management with Thermochromic Hydrogel Microparticles. US Patent App. 17/287,651.
  74. Nam, S. H., Han, G., Kowsari, K., Fang, N. X., Kim, S., & Cho, Y. T. (2021). On Demand Ceramic Open Cell For Intensified Reaction By High Precision Additive Manufacturing. 2021 AIChE Annual Meeting.
  75. Ramazani, A., Shayeganfar, F., Sundararaghavan, V., & Fang, N. X. (2021). First principles study of electron transport through diarythylene transition metal dichalcogenide molecular switch. ArXiv Preprint ArXiv:2109., 13056.
  76. Ramazani, A., Shayeganfar, F., Kumar, A., & Fang, N. X. (2021). Terahertz Nonlinear Optics in Two-dimensional Semi-Hydrogenated SiB. ArXiv Preprint ArXiv:2109., 858.
  77. Shayeganfar, F., Ramazani, A., & Fang, N. X. (2021). The Effect of Twisting Angle on the Electronic Properties and Electron Transport and Hall Effect in the Twisted Circular and Rectangular Graphene and Graphene/Boron-Nitride …. ArXiv Preprint ArXiv:2109., 718.
  78. Wu, L., Dong, Z., Ganapathy, T., Fang, N. X., Li, C., Yu, C., Zhang, Y., & Song, Y. (2020). Highly efficient three-dimensional solar evaporator for high salinity desalination by localized crystallization. Nature Communications, 11, 521–521.
  79. Ge, Q., Li, Z., Wang, Z., Kowsari, K., Zhang, W., He, X., Zhou, J., & Fang, N. X. (2020). Projection micro stereolithography based 3D printing and its applications. International Journal of Extreme Manufacturing, 2(2), 22004–22004.
  80. Zieliński, T. G., Opiela, K. C., Pawłowski, P., Dauchez, N., Boutin, T., Kennedy, J., & ... (2020). Reproducibility of sound-absorbing periodic porous materials using additive manufacturing technologies: Round robin study. Additive Manufacturing, 36, 101564–101564.
  81. Zhang, Y., Dong, Z., Li, C., Du, H., Fang, N. X., Wu, L., & Song, Y. (2020). Continuous 3D printing from one single droplet. Nature Communications, 11(1), 4685–4685.
  82. Liu, Y., Song, J., Zhao, W., Ren, X., Cheng, Q., Luo, X., Fang, N. X., & Hu, R. (2020). Dynamic thermal camouflage via a liquid-crystal-based radiative metasurface. Nanophotonics, 9(4), 855–863.
  83. Dong, E., Song, Z., Zhang, Y., Mosanenzadeh, S. G., He, Q., Zhao, X., & ... (2020). Bioinspired metagel with broadband tunable impedance matching. Science Advances 6 (44), Eabb, 3641.
  84. Deng, M., Li, S., Zhang, Z., Kang, I., Fang, N. X., & Barbastathis, G. (2020). On the interplay between physical and content priors in deep learning for computational imaging. Optics Express, 28(16), 24152–24170.
  85. Carbajo, J., Mosanenzadeh, S. G., Kim, S., & Fang, N. X. (2020). Sound absorption of acoustic resonators with oblique perforations. Applied Physics Letters, 116(5).
  86. Carbajo, J., Mosanenzadeh, S. G., Kim, S., & Fang, N. X. (2020). Multi-layer perforated panel absorbers with oblique perforations. Applied Acoustics, 169, 107496–107496.
  87. Liu, C., Ma, C., Li, X., Luo, J., Fang, N. X., & Lai, Y. (2020). Wide-angle broadband nonreflecting acoustic metamaterial fence. Physical Review Applied, 13(5), 54012–54012.
  88. Li, X., Tan, Z. J., & Fang, N. X. (2020). Grayscale stencil lithography for patterning multispectral color filters. Optica, 7(9), 1154–1161.
  89. Cao, P., Zhang, Y., Zhang, S., Ou, W., Mosanenzadeh, S. G., & Fang, N. X. (2020). Switching acoustic propagation via underwater metasurface. Physical Review Applied, 13(4), 44019–44019.
  90. Ramazani, A., Shayeganfar, F., Jalilian, J., & Fang, N. X. (2020). Exciton-plasmon polariton coupling and hot carrier generation in two-dimensional SiB semiconductors: a first-principles study. Nanophotonics, 9(2), 337–349.
  91. Ma, C., Li, X., & Fang, N. X. (2020). Acoustic angle-selective transmission based on binary phase gratings. Physical Review Applied, 14(6), 64058–64058.
  92. Li, X., Kundaliya, D., Tan, Z. J., Anc, M., & Fang, N. X. (2020). Quantum dots color converters for microLEDs: material composite and patterning technology. 2020 Conference on Lasers and Electro-Optics (CLEO), 1–2.
  93. Li, X., Du, H., Liu, Z., & Fang, N. X. (2020). (Invited) Printing Optical Materials. Electrochemical Society Meeting Abstracts Prim, 2020, 1738–1738.
  94. Du, H., Ma, C., & Fang, N. X. (2020). Echoes of fluid spin. National Science Review, 7(1), 2–3.
  95. Shusteff, M., Spadaccini, C. M., Fang, N., Panas, R. M., Henriksson, J., Kelly, B., & ... (2020). Multi-beam resin curing system and method for whole-volume additive manufacturing. US Patent 10,875,247.
  96. Li, X., Tan, Z. J., & Fang, N. X. (2020). Material Deposition with Spatial Thickness Variation for Reflective Color Filter. CLEO: Science and Innovations, SW3F., 5.
  97. Surjadi, J. U., Gao, L., Du, H., Li, X., Xiong, X., Fang, N. X., & Lu, Y. (2019). Mechanical metamaterials and their engineering applications. Advanced Engineering Materials, 21(3), 1800864–1800864.
  98. Li, X. H., Liu, C., Feng, S. P., & Fang, N. X. (2019). Broadband light management with thermochromic hydrogel microparticles for smart windows. Joule, 3(1), 290–302.
  99. Han, D., Yang, C., Fang, N. X., & Lee, H. (2019). Rapid multi-material 3D printing with projection micro-stereolithography using dynamic fluidic control. Additive Manufacturing, 27, 606–615.
  100. Ma, C., Kim, S., & Fang, N. X. (2019). Far-field acoustic subwavelength imaging and edge detection based on spatial filtering and wave vector conversion. Nature Communications, 10, 204–204.
  101. Zhang, K., Ma, C., He, Q., Lin, S., Chen, Y., Zhang, Y., Fang, N. X., & Zhao, X. (2019). Metagel with broadband tunable acoustic properties over air-water-solid ranges. Advanced Functional Materials, 29(38), 1903699–1903699.
  102. Li, X., Kundaliya, D., Tan, Z. J., Anc, M., & Fang, N. X. (2019). Projection lithography patterned high-resolution quantum dots/thiol-ene photo-polymer pixels for color down conversion. Optics Express, 27(21), 30864–30874.
  103. Dong, E., Zhang, Y., Song, Z., Zhang, T., Cai, C., & Fang, N. X. (2019). Physical modeling and validation of porpoises’ directional emission via hybrid metamaterials. National Science Review, 6(5), 921–928.
  104. Liu, C., Song, Q., Chen, J., Li, X., Cai, J., Lu, Z., Li, W., Fang, N. X., & Feng, S. P. (2019). Electromagnetic and Chemical Enhancements of Surface‐Enhanced Raman Scattering Spectra from Cu2O Hexagonal Nanoplates. Advanced Materials Interfaces, 6(17), 1900534–1900534.
  105. Dafei, J., Xia, Y., Christensen, T., Freeman, M., Wang, S., Fong, K. Y., Gardner, G. C., & ... (2019). Topological kink plasmons on magnetic-domain boundaries. Nature Communications, 10, 4565–4565.
  106. Ruan, J. Q., Mosanenzadeh, S. G., Li, X., Yu, S. Y., Ma, C., Lin, X., Zhang, S. T., Lu, M. H., & ... (2019). Bimodal hybrid lightweight sound-absorbing material with high stiffness. Applied Physics Express, 12(3), 35002–35002.
  107. Tan, Z. J., & Fang, N. X. (2019). Metric for Quantifying Switching Variability in Resistive Switching Devices. IEEE Electron Device Letters, 40(9), 1546–1549.
  108. Zhang, K., Ma, C., He, Q., Lin, S., Chen, Y., Zhang, Y., Fang, N. X., & Zhao, X. (2019). Hydrogels: Metagel with Broadband Tunable Acoustic Properties Over Air-Water-Solid Ranges (Adv. Funct. Mater. 38/2019). Advanced Functional Materials, 29(38), 1970264–1970264.
  109. Xu, J., & Fang, N. (2019). Systems, apparatus, and methods for hearing protection. US Patent 10,375,467.
  110. Xu, J., Nemati, N., Viard, N., Fang, N., & Lafarge, D. (2019). Acoustic Metamaterial. World Scientific Handbook of Metamaterials and Plasmonics, 2, 57–129.
  111. Fang, N. X., Ma, C., & Li, X. (2019). Soft acoustic metamaterials: From broadband tunable metagels to directional emission. The Journal of the Acoustical Society of America 146 (4_Supplement), 3002.
  112. Ma, C., & Fang, N. X. (2019). Far-field acoustic subwavelength imaging and edge detection. The Journal of the Acoustical Society of America 145 (3_Supplement), 1792.
  113. Yang, Z., Deng, Y., Zhang, X., Wang, S., Chen, H., Yang, S., Khurgin, J., Fang, N. X., & ... (2018). High‐performance single‐crystalline perovskite thin‐film photodetector. Advanced Materials, 30(8), 1704333–1704333.
  114. Liu, Z., Du, H., Li, J., Lu, L., Li, Z. Y., & Fang, N. X. (2018). Nano-kirigami with giant optical chirality. Science Advances 4 (7), Eaat, 4436.
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  127. Jeong, Y., Kim, S., Fang, N. X., Shin, S., Choi, H., Kim, S., Kwon, S., & Cho, Y. T. (2018). Multiscale structures aggregated by imprinted nanofibers for functional surfaces. Journal of Visualized Experiments: JoVE, 58356.
  128. Zaim, S. A., Raza, A., Lu, J. Y., Choi, D., Fang, N. X., & Zhang, T. J. (2018). Enhancing Visible Light Photocatalysis with Hydrogenated Titanium Dioxide for Anti-Fouling Applications. MRS Advances, 3(53), 3181–3187.
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  135. Lu, J. Y., Raza, A., Noorulla, S., Alketbi, A. S., Fang, N. X., Chen, G., & Zhang, T. J. (2017). Near‐perfect ultrathin nanocomposite absorber with self‐formed topping plasmonic nanoparticles. Advanced Optical Materials, 5(18), 1700222–1700222.
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  137. Lee, Y. E., Miller, O. D., Reid, M. T. H., Johnson, S. G., & Fang, N. X. (2017). Computational inverse design of non-intuitive illumination patterns to maximize optical force or torque. Optics Express, 25(6), 6757–6766.
  138. Hu, Q., Jin, D., Xiao, J., Nam, S. H., Liu, X., Liu, Y., Zhang, X., & Fang, N. X. (2017). Ultrafast fluorescent decay induced by metal-mediated dipole-dipole interaction in two-dimensional molecular aggregates. Proceedings of the National Academy of Sciences, 114(38), 10017–10022.
  139. Nemati, N., Lee, Y. E., Lafarge, D., Duclos, A., & Fang, N. (2017). Nonlocal dynamics of dissipative phononic fluids. Physical Review B, 95(22), 224304–224304.
  140. Espinosa-Hoyos, D., Du, H., Fang, N. X., & Vliet, K. J. V. (2017). Poly (HDDA)-based polymers for microfabrication and mechanobiology. MRS Advances, 2(24), 1315–1321.
  141. Klug, M. T., Courchesne, N. M. D., Lee, Y. E., Yun, D. S., Qi, J., Heldman, N. C., & ... (2017). Mediated growth of zinc chalcogen shells on gold nanoparticles by free-base amino acids. Chemistry of Materials, 29(16), 6993–7001.
  142. Rahman, M. M., Younes, H., Ni, G., Lu, J. Y., Raza, A., Zhang, T. J., Fang, N. X., & ... (2017). Plasmonic nanofluids enhanced solar thermal transfer liquid. AIP Conference Proceedings, 1850(1), 110013–110013.
  143. Zheng, X., Smith, W., Jackson, J., Moran, B., Cui, H., Chen, D., Ye, J., Fang, N., & ... (2017). Addendum: Multiscale metallic metamaterials. Nature Materials, 16(4), 497–497.
  144. Yang, Y., Wang, D., Tan, Z. J., Xiong, X., Wang, M., Peng, R., & Fang, N. X. (2017). Ultrathin platelet antennas mediated light-matter interaction in monolayer MoS2. Optics Express, 25(9), 10261–10269.
  145. Spadaccini, C., Jackson, J., Watts, S., Tortorelli, D., Hopkins, J., Fang, N., & ... (2017). Integrated computational materials engineering (ICME) approaches to the design and fabrication of architected materials. 58th AIAA/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials ….
  146. Fang, N. X. (2017). Tailoring the flow of acoustic waves by architectured metamaterials. The Journal of the Acoustical Society of America 142 (4_Supplement), 2683.
  147. Fang, N. (2017). Chiral Plasmons and Controllable Quenching of Super-radiance in Two Dimensional Layered Materials. MDPI AG.
  148. Jin, D., Christensen, T., Soljačić, M., Fang, N. X., Lu, L., & Zhang, X. (2017). Publisher’s Note: Infrared Topological Plasmons in Graphene [Phys. Rev. Lett. 118, 245301 (2017)]. Physical Review Letters, 119(1), 19901–19901.
  149. Galich, P. I., Fang, N. X., Boyce, M. C., & Rudykh, S. (2017). Erratum to “Elastic wave propagation in finitely deformed layered materials”[J. Mech. Phys. Solids 98 (2017) 390-410]. Journal of the Mechanics and Physics of Solids.
  150. Low, T., Chaves, A., Caldwell, J. D., Kumar, A., Fang, N. X., Avouris, P., Heinz, T. F., & ... (2016). Polaritons in layered 2D materials. Nature Materials, 16, 182–194.
  151. Ge, Q., Sakhaei, A. H., Lee, H., Dunn, C. K., Fang, N. X., & Dunn, M. L. (2016). Multimaterial 4D printing with tailorable shape memory polymers. Scientific Reports, 6(1), 31110–31110.
  152. Zheng, X., Smith, W., Jackson, J., Moran, B., Cui, H., Chen, D., Ye, J., Fang, N., & ..., N. (2016). Multiscale metallic metamaterials. Nature Materials, 15, 1100–1106.
  153. Wang, Q., Jackson, J. A., Ge, Q., Hopkins, J. B., Spadaccini, C. M., & Fang, N. X. (2016). Lightweight Mechanical Metamaterials with Tunable Negative Thermal Expansion. Physical Review Letters, 117, 175901–175901.
  154. Jin, D., Lu, L., Wang, Z., Fang, C., Joannopoulos, J. D., Soljačić, M., Fu, L., & Fang, N. X. (2016). Topological magnetoplasmon. Nature Communications, 10.1038/Ncomms, 13486.
  155. Lu, J. Y., Nam, S. H., Wilke, K., Raza, A., Lee, Y. E., & ..., A. (2016). Localized Surface Plasmon-Enhanced Ultrathin Film Broad-Band Nanoporous Absorbers. Advanced Optical Materials, 10.1002/Adom., 201600078.
  156. Spadaccini, C. M., Farquar, G., Weisgraber, T., Gemberling, S., Fang, N., Xu, J., & ... (2016). High resolution projection micro stereolithography system and method. US Patent 9,492,969.
  157. Lu, J. Y., Raza, A., Fang, N. X., Chen, G., & Zhang, T. J. (2016). Effective dielectric constants and spectral density analysis of plasmonic nanocomposites. Journal of Applied Physics, 120(16).
  158. Hopkins, J. B., Song, A., Lee, H., Fang, N. X., & Spadaccini, C. M. (2016). Polytope Sector-based Synthesis and Analysis of Microstructural Architectures with Tunable Thermal Conductivity and Expansion. Journal of Mechanical Design.
  159. Zhu, R., Zheng, B., Ma, C., Xu, J., Fang, N., & Chen, H. (2016). A broadband polygonal cloak for acoustic wave designed with linear coordinate transformation. The Journal of the Acoustical Society of America, 140(1), 95–101.
  160. Eliason, J. K., Vega-Flick, A., Hiraiwa, M., Khanolkar, A., Gan, T., & ..., N. B. (2016). Resonant attenuation of surface acoustic waves by a disordered monolayer of microspheres. Applied Physics Letters, 108, 61907–61907.
  161. Shusteff, M., Panas, R. M., Henriksson, J., Kelly, B. E., & Browar, A. E. M. (2016). Additive fabrication of 3d structures by holographic lithography. University of Texas at Austin.
  162. Rahman, M. M., Younes, H., Lu, J. Y., Ni, G., Yuan, S., Fang, N. X., Zhang, T. J., & ... (2016). Broadband light absorption by silver nanoparticle decorated silica nanospheres. RSC Advances, 6(109), 107951–107959.
  163. Spadaccini, C. M., Farquar, G., Weisgraber, T., Gemberling, S., Fang, N., Xu, J., & ... (2016). High resolution projection micro stereolithography system and method. Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States).
  164. Tan, Z. J., Jin, D., & Fang, N. X. (2016). High-precision broadband measurement of refractive index by picosecond real-time interferometry. Applied Optics, 55(24), 6625–6629.
  165. Shusteff, M., Dudoff, J. K., Browar, A. E. M., Shaw, L. A., Panas, R. M., Hopkins, J. B., & ... (2016). Optimal Source Beam Shaping for Digital Holographic Lithography. Digital Holography and Three-Dimensional Imaging, DW1D., 2.
  166. Sachan, R., Roldan, M. A., Jin, D., Weber, W. J., & Fang, N. X. (2016). STEM-EELS Study of Plasmonic Modes in Ag nanotriangles: Size and Dielectric Dependence. Microscopy and Microanalysis 22 (S3), 988–989.
  167. Kumar, A., Low, T., Fung, K. H., Avouris, P., & Fang, N. X. (2015). Tunable light-matter interaction and the role of hyperbolicity in graphene-hBN system. Nano Letters, 15(5), 3172–3180.
  168. Babaee, S., Viard, N., Wang, P., Fang, N. X., & Bertoldi, K. (2015). Harnessing Deformation to Switch On and Off the Propagation of Sound. Advanced Materials.
  169. Kumar, A., Nemilentsau, A., Fung, K. H., Hanson, G., Fang, N. X., & Low, T. (2015). Chiral plasmon in gapped Dirac systems. Physical Review B 93, 041413(R).
  170. Hsu, K., Fang, N., Panikkar, G., & Ferreira, P. (2015). Modeling of charge-mass transport in solid electrolyte-based electrochemical nanomanufacturing process. Journal of Manufacturing Processes, 18, 60–66.
  171. Jin, D., Hu, Q., Neuhauser, D., von Cube, F., Yang, Y., Sachan, R., Luk, T. S., & ... (2015). Quantum-Spillover Enhanced Surface-Plasmonic Absorption at the Interface of Silver and High-Index Dielectrics. Physical Review Letters, 115, 193901–193901.
  172. Xu, J., Jiang, X., Fang, N., Georget, E., Abdeddaim, R., & ..., J.-M. (2015). Molding acoustic, electromagnetic and water waves with a single cloak. Scientific Reports, 5, 10678–10678.
  173. Maznev, A. A., Gu, G., Sun, S., Xu, J., Shen, Y., Fang, N., & Zhang, S. (2015). Extraordinary focusing of sound above a soda can array without time reversal. New Journal of Physics, 17(4), 42001–42001.
  174. Li, X., Fang, N. X., Ferreira, P. M., Chern, W., Chun, I. S., HSU, K. H., & ... (2015). Method of forming an array of high aspect ratio semiconductor nanostructures. US Patent 8,980,656.
  175. Courchesne, N. M. D., Klug, M. T., Huang, K. J., Weidman, M. C., Cantu, V. J., & ... (2015). Constructing Multifunctional Virus-Templated Nanoporous Composites for Thin Film Solar Cells: Contributions of Morphology and Optics to Photocurrent Generation. The Journal of Physical Chemistry C, 119(25), 13987–14000.
  176. Nemati, N., Kumar, A., Lafarge, D., & Fang, N. X. (2015). Nonlocal description of sound propagation through an array of Helmholtz resonators. Comptes Rendus Mecanique, 343, 656–669.
  177. Hsu, K. H., Fang, N., & Fung, K. (2015). A study on the spectral characteristics of surface enhanced Raman scattering based on far‐field extinction and near‐field electromagnetic field intensity of 2D nanostructures. Journal of Raman Spectroscopy, 46(1), 59–63.
  178. Viard, N., Gallardo, C., Xu, J., & Fang, N. (2015). Subwavelength acoustic metamaterial with tunable acoustic absorption. The Journal of the Acoustical Society of America 138 (3_Supplement), 1752.
  179. Otsuka, P. H., Mezil, S., Matsuda, O., Tomoda, M., Gian, T., Boechler, N., & ... (2015). 2P1-9 Imaging surface acoustic waves on a metamaterial based on silica microspheres. Proceedings of Symposium on Ultrasonic Electronics 36, _2P1-9-1_-_2P1-9-2_.
  180. Viard, N., & Fang, N. (2015). Acoustic transmission from a single crystal layer of nonlinear resonators in a soft elastic matrix. The Journal of the Acoustical Society of America 138 (3_Supplement), 1939.
  181. Xu, J., Kumar, A., Fung, K. H., Jin, D., & Fang, N. X. (2015). Quest for an Optical Circuit Probe. Microscopy and Microanalysis 21 (S3), 1251–1252.
  182. Lu, J. Y., Liu, D., Wilke, K., Noorulla, S., Fang, N., & Zhang, T. (2015). Plasmon Enhanced Ultrathin Film Broad-Band Nanoporous Absorber. APS March Meeting Abstracts 2015, H1., 335.
  183. Babaee, S., Viard, N., Fang, N., & Bertoldi, K. (2015). Tunable acoustic metamaterials. APS March Meeting Abstracts 2015, L36., 3.
  184. Rahman, M. M., Lu, J. Y., Ni, G., Fang, N. X., Zhang, T. J., & Ghaferi, A. A. (2015). FDTD study of the formation of optical vortices associated with core-shell nanoparticle cluster. APS March Meeting Abstracts 2015, V1., 15.
  185. Zheng, X., Lee, H., Weisgraber, T. H., Shusteff, M., DeOtte, J., Duoss, E. B., & ... (2014). Ultralight, ultrastiff mechanical metamaterials. Science, 344(6190), 1373–1377.
  186. Shen, C., Xu, J., Fang, N. X., & Jing, Y. (2014). Anisotropic Complementary Acoustic Metamaterial for Canceling out Aberrating Layers. Phys. Rev. X, 4, 41033–41033.
  187. Chou, J., Yeng, Y. X., Lee, Y. E., Lenert, A., Rinnerbauer, V., Celanovic, I., & ... (2014). Enabling Ideal Selective Solar Absorption with 2D Metallic Dielectric Photonic Crystals. Advanced Materials, 26, 8041–8041.
  188. Courchesne, N. M. D., Klug, M. T., Chen, P. Y., Kooi, S. E., Yun, D. S., Hong, N., & ... (2014). Assembly of a bacteriophage-based template for the organization of materials into nanoporous networks. Advanced Materials (Deerfield Beach, Fla.), 26(21), 3398–3398.
  189. Lee, Y. E., Fung, K. H., Jin, D., & Fang, N. (2014). Optical Torque from Enhanced Scattering by Multipolar Plasmonic Resonance. Nanophotonics, 3, 343–350.
  190. Fung, K. H., Kumar, A., & Fang, N. X. (2014). Electron-photon scattering mediated by localized plasmons: A quantitative analysis by eigen-response theory. Physical Review B, 89(4), 45408–45408.
  191. Kumar, A., Fung, K. H., Reid, M. T., & Fang, N. X. (2014). Photon Emission Rate Engineering using Graphene Nanodisc Cavities. Optics Express, 22(6), 6400–6415.
  192. Kumar, A., Fang, N., Fung, K. H., & Reid, H. (2014). Transformation Optics scheme for two-dimensional materials. Optics Letters, 39(7), 2113–2116.
  193. Fang, N. X., Xu, J., Ma, C., & Nemati, N. (2014). From acoustic metamaterials to functional metasurfaces. The Journal of the Acoustical Society of America 135 (4_Supplement), 2221–2222.
  194. Duoss, E., Zhu, C., Sullivan, K., Vericella, J., Hopkins, J., Zheng, R., Pascall, A., & ... (2014). Additive micro-manufacturing of designer materials. Materials Challenges and Testing for Manufacturing, Mobility, Biomedical ….
  195. Zheng, X., Deotte, J., Vericella, J., Shusteff, M., Weisgraber, T., Lee, H., Fang, N., & ... (2014). Lightweight micro lattices with nanoscale features fabricated from Projection Microstereolithography. 2014 IEEE 27th International Conference on Micro Electro Mechanical Systems ….
  196. Yang, Y., Klug, M., Hu, Q., Jin, D., & Fang, N. (2014). Synthesize Silver Nanoprisms by a Thermal Growth Method. Nanotechnology, Nanomaterials, 147.
  197. Liu, Y., Zhao, C., Zhao, Y., Fang, N., & Huang, T. J. (2014). Reconfigurable plasmofluidic lenses. Optics InfoBase Conference Papers.
  198. Jin, D., Lee, Y. K., Klug, M., Wang, F., Fung, K. H., & Fang, N. X. (2014). Quantum electromechanical processes in plasmonic nanostructures. CLEO: QELS_Fundamental Science, FW1C., 1.
  199. Xu, J., Ma, H., & Fang, N. X. (2014). Near-field Holographic Retrieval of an Isolated Subwavelength Hole in a Thin Metallic Film. ArXiv Preprint ArXiv:1404., 441.
  200. Jin, D., Lee, Y. K., Klug, M., Wang, F., Fung, K. H., & Fang, N. X. (2014). Electromechanical processes in plasmonic nanostructures: From continuum flows to quantum effects. Workshop on Optical Plasmonic Materials, OW2D., 2.
  201. Kaynia, N., Fang, N. X., & Boyce, M. C. (2014). Instability and Wave Propagation in Structured 3D Composites. APS March Meeting Abstracts 2014, S16., 6.
  202. Peng, R. W., Hu, Q., Xu, D. H., Zhou, Y., Fan, R. H., Fang, N. X., Wang, Q. J., Huang, X. R., & ... (2014). Spectral splitting with a plasmonic nanowire on silicon chip. APS March Meeting Abstracts 2014, Y50., 12.
  203. Jin, D., Wang, F., & Fang, N. (2014). A single-wavefunction density functional approach to the plasmonic nanostructures in the extreme quantum limit. APS March Meeting Abstracts 2014, L50., 2.
  204. Dang, X., Qi, J., Klug, M. T., Chen, P. Y., Yun, D. S., Fang, N. X., Hammond, P. T., & ... (2013). Tunable localized surface plasmon-enabled broadband light-harvesting enhancement for high-efficiency panchromatic dye-sensitized solar cells. Nano Letters, 13(2), 637–642.
  205. Boechler, N., Eliason, J. K., Kumar, A., Maznev, A. A., Nelson, K. A., & Fang, N. (2013). Interaction of a Contact Resonance of Microspheres with Surface Acoustic Waves. Physical Review Letters, 111, 36103–36103.
  206. Zhao, C., Liu, Y., Zhao, Y., Fang, N., & Huang, T. J. (2013). A reconfigurable plasmofluidic lens. Nature Communications, 4, 2305–2305.
  207. Chen, P. Y., Dang, X., Klug, M. T., Qi, J., Courchesne, N. M. D., Burpo, F. J., & ... (2013). Versatile three-dimensional virus-based template for dye-sensitized solar cells with improved electron transport and light harvesting. ACS Nano, 7(8), 6563–6574.
  208. Azeredo, B. P., Sadhu, J., Ma, J., Jacobs, K., Kim, J., Lee, K., Eraker, J. H., Li, X., & ... (2013). Silicon nanowires with controlled sidewall profile and roughness fabricated by thin-film dewetting and metal-assisted chemical etching. Nanotechnology, 24(22), 225305–225305.
  209. Cameron, J. A., Milner, D. J., Lee, J. S., Cheng, J., Fang, N. X., & Jasiuk, I. M. (2013). Employing the Biology of Successful Fracture Repair to Heal Critical Size Bone Defects. Current Topics in Microbiology and Immunology, 367, 113–132.
  210. Jin, D., Kumar, A., Fung, K. H., Xu, J., & Fang, N. X. (2013). Terahertz plasmonics in ferroelectric-gated graphene. Applied Physics Letters, 102(20).
  211. Hu, Q., Xu, D. H., Zhou, Y., Peng, R. W., Fan, R. H., Fang, N. X., Wang, Q. J., Huang, X. R., & ... (2013). Position-sensitive spectral splitting with a plasmonic nanowire on silicon chip. Scientific Reports, 3, 3095–3095.
  212. Cui, Y., Xu, J., Lin, Y., Li, G., Hao, Y., He, S., & Fang, N. X. (2013). Optical curtain effect: Extraordinary optical transmission enhanced by antireflection. Plasmonics, 8(2), 1087–1093.
  213. Zheng, X., Deotte, J., Alonso, M. P., Farquar, G. R., Weisgraber, T. H., & ... (2013). Erratum: Design and optimization of a light-emitting diode projection micro-stereolithography three-dimensional manufacturing system (Review of Scientific Instruments (2012) 83 …. Review of Scientific Instruments, 84(1), 19902–19902.
  214. Jin, D., & Fang, N. X. (2013). Plasmonic angular momentum on metal-dielectric nano-wedges in a sectorial indefinite metamaterial. Optics Express, 21(23), 28344–28358.
  215. Lee, H., Lu, J., Georgiadis, J., & Fang, N. (2013). A study of the concentration dependent water diffusivity in polymer using magnetic resonance imaging. APS March Meeting Abstracts 2013, W32., 7.
  216. Cola, B. A., Daiguji, H., Dames, C., Fang, N., Fushinobu, K., Inoue, S., Kikugawa, G., & ... (2013). Report on the Seventh US-Japan Joint Seminar on Nanoscale Transport Phenomena—Science and Engineering. Nanoscale and Microscale Thermophysical Engineering, 17(1), 25–49.
  217. Hsieh, C. H., Xu, J., Gao, H., Fang, N. X., & Barbastathis, G. (2013). Fabrication and characterization of thin-film nanostructured Lüneburg lens. 2013 International Conference on Optical MEMS and Nanophotonics (OMN), 35–36.
  218. Xu, J., & Fang, N. X. (2013). Complex polarizability of an isolated subwavelength plasmonic hole in a thin metal film. CLEO: Science and Innovations, JTu4A., 62.
  219. Roxworthy, B. J., Ko, K. D., Kumar, A., Fung, K. H., Chow, E. K. C., Liu, G. L., Fang, N. X., & ... (2012). Application of plasmonic bowtie nanoantenna arrays for optical trapping, stacking, and sorting. Nano Letters, 12(2), 796–801.
  220. Zheng, X., Deotte, J., Alonso, M. P., Farquar, G. R., Weisgraber, T. H., & ... (2012). Design and optimization of a light-emitting diode projection micro-stereolithography three-dimensional manufacturing system. Review of Scientific Instruments, 83(12).
  221. Feser, J. P., Sadhu, J. S., Azeredo, B. P., Hsu, K. H., Ma, J., Kim, J., Seong, M., & ... (2012). Thermal conductivity of silicon nanowire arrays with controlled roughness. Journal of Applied Physics, 112(11).
  222. Jing, Y., Xu, J., & Fang, N. X. (2012). Numerical study of a near-zero-index acoustic metamaterial. Physics Letters A, 376(45), 2834–2837.
  223. Lee, H., Zhang, J., Jiang, H., & Fang, N. X. (2012). Prescribed pattern transformation in swelling gel tubes by elastic instability. Physical Review Letters, 108(21), 214304–214304.
  224. Lee, H., & Fang, N. X. (2012). Micro 3D printing using a digital projector and its application in the study of soft materials mechanics. Journal of Visualized Experiments: JoVE, 4457.
  225. Cui, Y., Fung, K. H., Xu, J., He, S., & Fang, N. X. (2012). Multiband plasmonic absorber based on transverse phase resonances. Optics Express, 20(16), 17552–17559.
  226. Cui, Y., Li, G., Fung, K. H., Hao, Y., He, S., & Fang, N. X. (2012). Plasmonic sensors based on Rayleigh anomaly. 2012 Asia Communications and Photonics Conference (ACP), 1–3.
  227. Cui, Y., Xu, J., Lin, Y., Tian, X., Hao, Y., He, S., & Fang, N. X. (2012). Multiband electromagnetic absorbers based on a metal/dielectric multilayer stack. Asia Communications and Photonics Conference, PAF4D., 3.
  228. Lin, Y., Cui, Y., Fung, K. H., Hao, Y., He, S., & Fang, N. X. (2012). Designing a thin film blackbody based on plasmonic anisotropic metamaterials. Asia Communications and Photonics Conference, ATh2F., 1.
  229. Xu, J., Jing, Y., & Fang, N. X. (2012). Transformation acoustics: virtual pinholes and collimators. The Journal of the Acoustical Society of America 131 (4_Supplement), 3325.
  230. Lee, H., Fung, K. H., & Fang, N. (2012). Dynamical Actuation and Pattern Formation with Local Swelling in Microgels. APS March Meeting Abstracts 2012, W52., 13.
  231. Xu, J., Ma, H., & Fang, N. (2012). Subwavelength imaging of plasmonic nano-bubble cavity probed by Cathodoluminescence. APS March Meeting Abstracts 2012, J18., 3.
  232. Fung, K. H., Kumar, A., & Fang, N. X. (2012). Lighting up dark plasmon modes with electron beam. APS March Meeting Abstracts 2012, B18., 6.
  233. Fang, N. (2012). Micro-actuation through swelling and tissue engineering. APS March Meeting Abstracts 2012, V52., 1.
  234. Wang, W., Cui, Y., Xu, J., Lin, Y., Tian, X., Hao, Y., He, S., & Fang, N. X. (2012). Multiband electromagnetic absorbers based on a metal/dielectric multilayer stack. Asia Communications and Photonics Conference, ACP.
  235. Cai, S., Lee, H., Xu, J., & Fang, N. X. (2012). Quest for flexible acoustic circuitry with acousto-elastic metamaterials. Metamaterials ,’ 2012.
  236. Zhang, S., Xia, C., & Fang, N. (2011). Broadband acoustic cloak for ultrasound waves. Physical Review Letters, 106(2), 24301–24301.
  237. Cui, Y., Fung, K. H., Xu, J., Ma, H., Jin, Y., He, S., & Fang, N. X. (2011). Ultra-broadband Light Absorption by a Sawtooth Anisotropic Metamaterial Slab. Nano Letters, 12(3), 1443–1443.
  238. Cui, Y., Xu, J., Fung, K. H., Jin, Y., Kumar, A., He, S., & Fang, N. X. (2011). A Thin Film Broadband Absorber Based on Multi-sized Nanoantennas. Applied Physics Letters, 99(25), 253101–253101.
  239. Ko, K. D., Kumar, A., Fung, K. H., Ambekar, R., Liu, G. L., Fang, N. X., & Jr, K. C. T. (2011). Nonlinear optical response from arrays of Au bowtie nanoantennas. Nano Letters, 11(1), 61–65.
  240. Xia, C., & Cox, A. (2011). Three-Dimensional Microfabricated Bioreactors with Embedded Capillary Network. US Patent App. 12/679,497.
  241. Fang, N. X., Ferreira, P. M., HSU, K. H., SCHULTZ, P. L., JACOBS, K. E., Kumar, A., & ... (2011). Direct nanoscale patterning of metals using polymer electrolytes. US Patent 7,998,330.
  242. Kumar, A., Hsu, K. H., Jacobs, K. E., Ferreira, P. M., & Fang, N. X. (2011). Direct metal nano-imprinting using an embossed solid electrolyte stamp. Nanotechnology, 22, 155302–155302.
  243. Jacobs, K. E., Hsu, K. H., Han, X., Kumar, A., Azeredo, B. P., Fang, N. X., & Ferreira, P. M. (2011). Solid-state superionic stamping with silver iodide-silver metaphosphate glass. Nanotechnology, 22(42), 425301–425301.
  244. Wang, J., Fung, K. H., Dong, H. Y., & Fang, N. X. (2011). Zeeman splitting of photonic angular momentum states in a gyromagnetic cylinder. Physical Review B—Condensed Matter and Materials Physics, 84(23), 235122–235122.
  245. Feng, L., Milner, D. J., Xia, C., Nye, H. L. D., Redwood, P., Cameron, J. A., Stocum, D. L., & ... (2011). Xenopus Laevis as a Novel Model to Study Long Bone Critical-Size Defect Repair by Growth Factor-Mediated Regeneration. Tissue Engineering Part A 17 (5-6), 691–701.
  246. Cui, Y., Fung, K. H., Xu, J., Yi, J., He, S., & Fang, N. X. (2011). Exciting multiple plasmonic resonances by a double-layered metallic nanostructure. JOSA B, 28(11), 2827–2832.
  247. Wang, J., Dong, H. Y., Fung, K. H., Cui, T. J., & Fang, N. X. (2011). Subwavelength image manipulation through an oblique layered system. Optics Express, 19(18), 16809–16820.
  248. Feng, L., Milner, D. J., Xia, C., Nye, H. L. D., Redwood, P., Cameron, J. A., Stocum, D., & ... (2011). Long bone critical size defect repair by regeneration in adult Xenopus laevis hindlimbs. Tiss Eng Part A, 17, 691–701.
  249. Lee, H., Zhang, J., Lu, J., Georgiadis, J., Jiang, H., & Fang, N. (2011). Coupled non-fickian diffusion and large deformation of hydrogels. Mechanics of Time-Dependent Materials and Processes in Conventional and ….
  250. Kumar, A., Fung, K. H., & Fang, N. X. (2011). Mapping of surface plasmon polaritons on nanostructured thin film disks using cathodoluminescence imaging. Photonic and Phononic Properties of Engineered Nanostructures, 7946, 268–273.
  251. Kumar, A., Hsu, K., Jacobs, K., Ferreira, P., & Fang, N. X. (2011). Characterizing the role of deformation during electrochemical etching of metallic films. MRS Online Proceedings Library (OPL) 1297, mrsf10-1297-p, 10–60.
  252. Fang, N., & Fung, K. H. (2011). Controlling Radiation Using Dark Plasmon Modes. META,’ 12.
  253. Kumar, A., Klug, M., Choi, J., Wang, J., & Fang, N. X. (2011). Blueprint of a defect tolerant waveguide isolator based on unidirectional surface waves. Frontiers in Optics, FMG, 7.
  254. Ko, K. D., Kumar, A., Fung, K. H., Ambekar, R., Liu, G. L., Fang, N. X., & Jr, K. C. T. (2011). Investigation of the nonlinear optical response from arrays of Au bowtie nanoantennas. Photonic and Phononic Properties of Engineered Nanostructures, 7946, 339–344.
  255. Kumar, A., Fung, K. H., & Fang, N. X. (2011). Investigations on plasmonic modes of noble metal nano-disks using high-resolution cathodoluminescence imaging spectroscopy. MRS Online Proceedings Library (OPL) 1294, mrsf10-1294-m, 4.
  256. Fang, N., Xu, J., & Jing, Y. (2011). Transformation Acoustics: Virtual Pinholes and Collimators. META,’ 12.
  257. Fang, N. X., Xu, J., Fung, K. H., & Kumar, A. (2011). Transforming light and sound with metamaterials. 2011 Future of Instrumentation International Workshop (FIIW) Proceedings, 42–43.
  258. Roxworthy, B. J., Ko, K. D., Kumar, A., Fung, K. H., Liu, G. L., Fang, N. X., & Toussaint, K. C. (2011). Efficient plasmonic trapping using bowtie nanoantennas. Frontiers in Optics, FTuS, 2.
  259. Ma, H., Xu, J., & Fang, N. X. (2011). Plasmonic nano-bubble cavity probed by cathodoluminescence. Frontiers in Optics, FMI, 5.
  260. Fang, N. (2011). SNM: Digital Optofluidic Self Assembly of Heterogeneous Metamaterials. NSF Award Number 1120724. Directorate for Engineering, 11(1120724), 20724–20724.
  261. Roxworthy, B. J., Ko, K. D., Kumar, A., Fung, K. H., Liu, G. L., Fang, N. X., & Toussaint, K. C. (2011). Bowtie nanoantennas for plasmonic optical trapping. Optical Trapping Applications, OTMA, 2.
  262. Lee, H., Zhang, J., An, Y., Jiang, H., & Fang, N. (2011). Buckling of swelling gels under constraints. APS March Meeting Abstracts 2011, W14., 3.
  263. Chern, W., Hsu, K., Chun, I. S., Azeredo, B. P., Ahmed, N., Kim, K. H., Zuo, J., Fang, N., & ... (2010). Nonlithographic patterning and metal-assisted chemical etching for manufacturing of tunable light-emitting silicon nanowire arrays. Nano Letters, 10(5), 1582–1588.
  264. Lee, H., Xia, C., & Fang, N. X. (2010). First jump of microgel; actuation speed enhancement by elastic instability. Soft Matter, 6(18), 4342–4345.
  265. Chaturvedi, P., Wu, W., Logeeswaran, V. J., Yu, Z., Islam, M. S., Wang, S. Y., & ... (2010). A smooth optical superlens. Applied Physics Letters, 96(4).
  266. Xia, C., Lee, H., & Fang, N. (2010). Solvent-driven polymeric micro beam device. Journal of Micromechanics and Microengineering, 20, 85030–85030.
  267. Hsu, K. H., Back, J. H., Fung, K. H., Ferreira, P. M., Shim, M., & Fang, N. X. (2010). SERS EM field enhancement study through fast Raman mapping of Sierpinski carpet arrays. Journal of Raman Spectroscopy, 41(10), 1124–1130.
  268. Kumar, A., Fung, K. H., Mabon, J. C., Chow, E., & Fang, N. X. (2010). Excitation and imaging of resonant optical modes of Au triangular nanoantennas using cathodoluminescence spectroscopy. Journal of Vacuum Science &Technology B: Microelectronics and Nanometer ….
  269. Chaturvedi, P., & Fang, N. X. (2010). Sub-diffraction-limited far-field imaging in infrared. Frontiers of Physics in China, 5(3), 324–329.
  270. Hsu, K., Ferreira, P., & Fang, N. (2010). Controlled directional growth of silver microwires on a solid electrolyte surface. Applied Physics Letters, 96(2).
  271. Cui, Y., Xu, J., He, S., & Fang, N. X. (2010). Plasmon-Assisted Optical Curtains. Plasmonics, 5(4), 369–374.
  272. Kumar, A., Fung, K. H., Mabon, J., Chow, E., & Fang, N. (2010). Cathodoluminescence imaging of plasmonic modes of Ag nanostructures. Photonic Metamaterials and Plasmonics, MTuB, 5.
  273. Fang, N. X. (2010). Fast and Low Power Optical Modulation in Metamaterials. Photonic Metamaterials and Plasmonics, MMC, 5.
  274. Xu, J., Ma, H., & Fang, N. X. (2010). Flipped-Fishnet Structure Design for Optical Modulator. Photonic Metamaterials and Plasmonics, MMA, 4.
  275. Ma, H., Xu, J., & Fang, N. (2010). An experimental study of transmission through a plasmonic hole. APS March Meeting Abstracts 2010, Y14., 6.
  276. Zhang, S., Yin, L., & Fang, N. (2009). Focusing ultrasound with an acoustic metamaterial network. Physical Review Letters, 102(19), 194301–194301.
  277. Chaturvedi, P., Hsu, K. H., Kumar, A., Fung, K. H., Mabon, J. C., & Fang, N. X. (2009). Imaging of plasmonic modes of silver nanoparticles using high-resolution cathodoluminescence spectroscopy. ACS Nano, 3(10), 2965–2974.
  278. Xia, C., & Fang, N. X. (2009). 3D microfabricated bioreactor with capillaries. Biomedical Microdevices, 11(6), 1309–1315.
  279. Xia, C., & Fang, N. (2009). Fully three-dimensional microfabrication with a grayscale polymeric self-sacrificial structure. Journal of Micromechanics and Microengineering, 19(11), 115029–115029.
  280. Hsu, K. H., Schultz, P. L., Ferreira, P. M., & Fang, N. X. (2009). Exploiting transport of guest metal ions in a host ionic crystal lattice for nanofabrication: Cu nanopatterning with Ag 2 S. Applied Physics A: Materials Science &Processing, 97(4), 863–868.
  281. Choi, S., Yan, M., Adesida, I., Hsu, K. H., & Fang, N. X. (2009). Ultradense gold nanostructures fabricated using hydrogen silsesquioxane resist and applications for surface-enhanced Raman spectroscopy. Journal of Vacuum Science &Technology B: Microelectronics and Nanometer ….
  282. Xu, J., Kumar, A., Chaturvedi, P., Hsu, K. H., & Fang, N. X. (2009). Enhancing light coupling with plasmonic optical antennas. Metamaterials: Theory, Design, and Applications, 271–291.
  283. Fung, K. H., Chaturvedi, P., Kumar, A., Hsu, K. H., & Fang, N. X. (2009). Far-field and near-field properties of triangular metal nanoparticle and nanopatterns of 3-fold rotational symmetry. Advances in Optical Materials, AThA, 5.
  284. Fang, N. X. (2009). Acoustic imaging. Advanced Manufacturing Technology, 30(8), 3–4.
  285. Ma, H., Xu, J., & Fang, N. X. (2009). Confocal Microscopy Measurement of Light Squeezed in Sub-wavelength Plasmonic Hole on Thin Metal Film. Frontiers in Optics, FWB, 6.
  286. Yin, L., & Fang, N. X. (2009). Enhanced Surface Photon Drag on Plasmonic Metamaterials: A Fizeau-Doppler Shift Study. ArXiv Preprint ArXiv:0907., 1712.
  287. Xu, J., Ma, H., & Fang, N. X. (2009). Phases Shift in Sub-wavelength Plasmonic Hole on Thin Metal Film. APS March Meeting Abstracts, A23., 8.
  288. Lee, H., Xia, C., & Fang, N. (2009). Rapid Hydrogel Microactuator Using Elastic Instability. APS March Meeting Abstracts, W18., 12.
  289. Kumar, A., Hsu, K., Jacobs, K., Ferreira, P., & Fang, N. (2009). Direct metal nano-patterning using embossed solid electrolyte. MRS Online Proceedings Library (OPL) 1156, 1156-D, 7–4.
  290. Zhang, S., & Fang, N. (2009). Fresnel lenses design by acoustic transmission line. ASME International Mechanical Engineering Congress and Exposition, Proceedings.
  291. Logeeswaran, V. J., Kobayashi, N. P., Islam, M. S., Wu, W., Chaturvedi, P., & ... (2008). Ultrasmooth silver thin films deposited with a germanium nucleation layer. Nano Letters, 9(1), 178–182.
  292. Chaturvedi, P., Hsu, K., Zhang, S., & Fang, N. (2008). New frontiers of metamaterials: design and fabrication. MRS Bulletin, 33(10), 915–920.
  293. Kumar, A., Hsu, K. H., Chaturvedi, P., Ma, H., Xu, J., & Fang, N. X. (2008). Fabrication and optical characterization of bowtie antennas. 2008 8th IEEE Conference on Nanotechnology, 98–99.
  294. Logeeswaran, V. J., Katzenmeyer, A., Islam, M. S., Kobayashi, N. P., Wu, W., & ... (2008). Electrical Resistivity &Thermal Stability of Smooth Silver Thin Film for Nanoscale Optoelectronic Devices. 2008 8th IEEE Conference on Nanotechnology, 92–94.
  295. Hsu, K. H., Schultz, P. L., Fang, N. X., & Ferreira, P. M. (2008). Patterning with Electrolyte: Solid-State Superionic Stamping. Unconventional Nanopatterning Techniques and Applications, 195–213.
  296. Xia, C., Lee, H., & Fang, N. X. (2008). 3D polymeric devices driven by surface micro fluidic capillaries. ASME.
  297. Chaturvedi, P., Hsu, K., Ma, H., Wang, S. Y., & Fang, N. (2008). Integrated negative index modulator on optical fiber. Plasmonics and Metamaterials, MWA, 2.
  298. Ma, H., Zhang, S., & Fang, N. (2008). PHYS 446-Waveguide lens design based on metal-dielectric-metal multilayer structure. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 235.
  299. Fang, N., Chaturvedi, P., Kumar, A., & Hsu, K. H. (2008). PHYS 319-Imaging of plasmonic modes of nanostructures using high-resolution cathodoluminescence spectroscopy. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 235.
  300. Zhang, S., & Fang, N. (2008). Design of acoustic cloak by transmission line approach. Noise Control and Acoustics Division Conference, 48396, 335–338.
  301. Malik, T., & Fang, N. X. (2008). Flow Inside Microchannels With Liquid-Walls. ASME International Mechanical Engineering Congress and Exposition, 48746, 921–925.
  302. Liu, Z., Durant, S., Lee, H., Pikus, Y., Fang, N., Xiong, Y., Sun, C., & Zhang, X. (2007). Far-field optical superlens. Nano Letters, 7(2), 403–408.
  303. Ambati, M., Fang, N., Sun, C., & Zhang, X. (2007). Surface resonant states and superlensing in acoustic metamaterials. Physical Review B—Condensed Matter and Materials Physics, 75(19), 195447–195447.
  304. Wu, W., Kim, E., Ponizovskaya, E., Liu, Y., Yu, Z., Fang, N., Shen, Y. R., & ... (2007). Optical metamaterials at near and mid-IR range fabricated by nanoimprint lithography. Applied Physics A: Materials Science &Processing, 87(2), 143–150.
  305. Wu, W., Yu, Z., Wang, S. Y., Williams, R. S., Liu, Y., Sun, C., Zhang, X., Kim, E., & ... (2007). Midinfrared metamaterials fabricated by nanoimprint lithography. Applied Physics Letters, 90, 63107–63107.
  306. Hsu, K. H., Schultz, P. L., Ferreira, P. M., & Fang, N. X. (2007). Electrochemical nanoimprinting with solid-state superionic stamps. Nano Letters, 7(2), 446–451.
  307. Schultz, P. L., Hsu, K. H., Fang, N. X., & Ferreira, P. M. (2007). Solid-state electrochemical nanoimprinting of copper. Journal of Vacuum Science &Technology B: Microelectronics and Nanometer ….
  308. Liu, Y., Fang, N., Wu, D., Sun, C., & Zhang, X. (2007). Symmetric and antisymmetric modes of electromagnetic resonators. Applied Physics A, 87(2), 171–174.
  309. Liu, Z., Xi, D., Pile, D., Luo, Q., Fang, N., & Zhang, X. (2007). Enhanced backward scattering by surface plasmons on silver film. Applied Physics A, 87(2), 157–160.
  310. Hsu, K., Schultz, P., Ferreira, P., & Fang, N. (2007). Solid-state electrochemical stamping of functional metallic nanostructures. 2007 7th IEEE Conference on Nanotechnology (IEEE NANO), 162–165.
  311. Zhang, S., Yin, L., & Fang, N. (2007). Design of Acoustic Metamaterials for Super-Resolution Ultrasound Imaging. ASME International Mechanical Engineering Congress and Exposition 43041 ….
  312. Vj, L., Kobayashi, N. P., Wu, W., Islam, M. S., Fang, N. X., Wang, S. Y., & Williams, R. S. (2007). Smooth Ag film deposited using e-beam evaporated Ge as an intermediate layer for applications in nanoscale devices and optical superlens. MRS Online Proceedings Library (OPL) 990, 0990-B, 8–18.
  313. Zhang, X., Ambati, M., Fang, N., Lee, H., Liu, Z., Sun, C., & Xiong, Y. (2007). Optical superlens. Surface Plasmon Nanophotonics, 105–123.
  314. Hsu, K. H., Schultz, P., Ferreira, P., & Fang, N. (2007). COLL 527-Functional plasmonic nanostructures by superionic stamping. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 234.
  315. Fang, N. (2007). NER: Manufacturing of Superionic Active Metallic Nanostructures. NSF Award Number 0709023. Directorate for Engineering, 7(709023), 9023–9023.
  316. Hsu, K., Fang, N., Ferreira, P., & Schultz, P. (2007). Direct Electrochemical Nanopatterning With Solid Ionic Conductors. ECS Meeting Abstracts, 856.
  317. Fang, N., Chaturvedi, P., Wu, W., Logeeswaran, V. J., Yu, Z., Xiong, Y., Islam, S., & ... (2007). Molecular Scale Imaging with A Smooth Superlens. APS March Meeting Abstracts, S38., 3.
  318. Fang, N., Xi, D., Xu, J., Ambati, M., Srituravanich, W., Sun, C., & Zhang, X. (2006). Ultrasonic metamaterials with negative modulus. Nature Materials, 5(6), 452–456.
  319. Wu, D., Fang, N., Sun, C., & Zhang, X. (2006). Stiction problems in releasing of 3D microstructures and its solution. Sensors and Actuators A: Physical, 128(1), 109–115.
  320. Fang, N. X., Ferreira, P. M., Hsu, K. H., & Rapaka, V. K. (2006). Pattern transfer by solid state electrochemical stamping. US Patent App. 11/376,908.
  321. Durant, S., Liu, Z., Fang, N., & Zhang, X. (2006). Theory of optical imaging beyond the diffraction limit with a far-field superlens. Plasmonics: Metallic Nanostructures and Their Optical Properties IV 6323 ….
  322. Chaturvedi, P., & Fang, N. X. (2006). Molecular scale imaging with a multilayer superlens. MRS Online Proceedings Library (OPL) 919, 0919-J, 4–7.
  323. Xia, C. G., Sun, C., Wu, D. M., Zhang, X., & Fang, N. (2006). 3D Microfabricated Bioreactors. NSTI-Nanotech, 2, 140–143.
  324. Hsu, K. H., Ferreira, P. M., & Fang, N. (2006). Direct Nanopatterning With Solid Ionic Stamping. ASME.
  325. Wu, W., Kim, E., Ponizovskaya, E., Liu, Y., Yu, Z., Bratkovsky, A., Fang, N., & ... (2006). Fabrication of optical meta-structure at infrared rang using nanoimprint lithography. 2006 International Symposium on Biophotonics, Nanophotonics and ….
  326. Lee, H., Xiong, Y., Fang, N., Srituravanich, W., Durant, S., Ambati, M., Sun, C., & ... (2006). Optical silver superlens imaging below the diffraction limit. MRS Online Proceedings Library (OPL) 919, 0919-J, 4–1.
  327. Hsu, K. H., Schultz, P. L., Ferreira, P. M., & Fang, N. X. (2006). A Solid Phase Electrochemical Nanoimprint Process. Proceedings of the NNT (Nanoimprint and Nanoprint Technology), San Francisco ….
  328. Ambati, M., Durant, S., Fang, N., Lee, H., Srituravanich, W., Sun, C., Xiong, Y., & ... (2006). Optical Silver Superlens Imaging Below the Diffraction Limit. MATERIALS RESEARCH SOCIETY SYMPOSIUM PROCEEDINGS, 919, 61–61.
  329. Xia, C., & Fang, N. (2006). IMECE2006-15408 Enhanced Mass Transport Through Permeable Polymer Microcirculatory Networks. ASME-PUBLICATIONS-BED, 58, 17–17.
  330. Fang, N., Lee, H., Sun, C., & Zhang, X. (2005). Sub-diffraction-limited optical imaging with a silver superlens. Science, 308(5721), 534–534.
  331. Sun, C., Fang, N., Wu, D. M., & Zhang, X. (2005). Projection micro-stereolithography using digital micro-mirror dynamic mask. Sensors and Actuators A: Physical, 121(1), 113–120.
  332. Lee, H., Xiong, Y., Fang, N., Srituravanich, W., Durant, S., Ambati, M., Sun, C., & ... (2005). Realization of optical superlens imaging below the diffraction limit. New Journal of Physics, 7, 255–255.
  333. Fang, N., Liu, Z., Yen, T. J., & Zhang, X. (2005). Experimental study of transmission enhancement of evanescent waves through silver films assisted by surface plasmon excitation. Applied Physics A: Materials Science &Processing, 80(6), 1315–1325.
  334. Durant, S., Fang, N., & Zhang, X. (2005). Comment on “Submicron imaging with a planar silver lens”[Appl. Phys. Lett. 84, 4403 (2004)]. Applied Physics Letters, 86(12).
  335. Padilla, W. J., Yen, T. J., Fang, N., Vier, D. C., Smith, D. R., Pendry, J. B., Zhang, X., & ... (2005). Infrared spectroscopy and ellipsometry of magnetic metamaterials. Quantum Sensing and Nanophotonic Devices II, 5732, 460–469.
  336. Yin, X., Chin, H., & Liu, Z. (2005). Resonance Enhanced Weak Values in Attenuated Total Internal Reflection. APS March Meeting Abstracts, R1., 60.
  337. Padilla, W., Yen, T. J., Vier, D., Smith, D. R., Pendry, J., Zhang, X., & Basov, D. (2005). THz spectroscopy and ellipsometry of magnetic metamaterials. APS March Meeting Abstracts, V39., 14.
  338. Chaturvedi, P., & Fang, N. (2005). Molecular Scale Imaging With a Mutlilayer Superlens. Integrated Nanosystems: Design, Synthesis, and Applications, 42088, 51–52.
  339. Yen, T. J., Padilla, W. J., Fang, N., Vier, D. C., Smith, D. R., Pendry, J. B., Basov, D. N., & ... (2004). Terahertz magnetic response from artificial materials. Science, 303(5663), 1494–1494.
  340. Srituravanich, W., Fang, N., Sun, C., Luo, Q., & Zhang, X. (2004). Plasmonic nanolithography. Nano Letters, 4(6), 1085–1088.
  341. Yin, X., Hesselink, L., Liu, Z., Fang, N., & Zhang, X. (2004). Large positive and negative lateral optical beam displacements due to surface plasmon resonance. Applied Physics Letters, 85, 372–372.
  342. Tseng, H. R., Wu, D., Fang, N. X., Zhang, X., & Stoddart, J. F. (2004). The metastability of an electrochemically controlled nanoscale machine on gold surfaces. ChemPhysChem, 5(1), 111–116.
  343. Fang, N., Sun, C., & Zhang, X. (2004). Diffusion-limited photopolymerization in scanning micro-stereolithography. Applied Physics A: Materials Science &Processing, 79(8), 1839–1842.
  344. Zhang, X., Sun, C., & Fang, N. (2004). Manufacturing at nanoscale: Top-down, bottom-up and system engineering. Journal of Nanoparticle Research, 6(1), 125–130.
  345. Srituravanich, W., Fang, N., Durant, S., Ambati, M., Sun, C., & Zhang, X. (2004). Sub-100 nm lithography using ultrashort wavelength of surface plasmons. Journal of Vacuum Science &Technology B: Microelectronics and Nanometer ….
  346. Yen, T. J., Wu, D., Fang, N., & Zhang, X. (2004). Tunable plasmonic wires at terahertz frequencies. Plasmonics: Metallic Nanostructures and Their Optical Properties II 5512 ….
  347. Srituravanich, W., Fang, N., Sun, C., Durant, S., Ambati, M., & Zhang, X. (2004). Plasmonic lithography. Integrated Nanosystems: Design, Synthesis, and Applications, 41774, 99–100.
  348. Srituravanich, W., Fang, N., Sun, C., & Zhang, X. (2004). Sub-100 nm periodic nanodot arrays using plasmonic lithography. International Conference on Electron, Ion, Photon Beam Technology and ….
  349. Wang, Y., Sun, C., Fang, N., & Zhang, X. (2004). Towards high-speed near-field scanning optical microscope. ASME International Mechanical Engineering Congress and Exposition, 47071, 487–491.
  350. Srituravanich, W., Fang, N., Durant, S., Ambati, M., Sun, C., & Zhang, X. (2004). Papers from the 48th International Conference on Electron, Ion, and Photon Beam Technology and Nanofabrication-Optical Lithography-Sub-100, nm lithography using ultrashort …. Journal of Vacuum Science and Technology-Section B, 22(6), 3475–3478.
  351. Fang, N., & Zhang, X. (2003). Imaging properties of a metamaterial superlens. Applied Physics Letters, 82(2), 161–163.
  352. Wu, D., Fang, N., Sun, C., Zhang, X., Padilla, W. J., Basov, D. N., Smith, D. R., & ... (2003). Terahertz plasmonic high pass filter. Applied Physics Letters, 83, 201–201.
  353. Liu, Z., Fang, N., Yen, T. J., & Zhang, X. (2003). Rapid growth of evanescent wave by a silver superlens. Applied Physics Letters, 83, 5184–5184.
  354. Yen, T. J., Fang, N., Zhang, X., Lu, G. Q., & Wang, C. Y. (2003). A micro methanol fuel cell operating at near room temperature. Applied Physics Letters, 83(19), 4056–4058.
  355. Fang, N., Liu, Z., Yen, T. J., & Zhang, X. (2003). Regenerating evanescent waves from a silver superlens. Opt. Express, 11(7), 682–687.
  356. Lazarev, A., Fang, N., Luo, Q., & Zhang, X. (2003). Formation of fine near-field scanning optical microscopy tips. Part I. By static and dynamic chemical etching. Review of Scientific Instruments, 74, 3679–3679.
  357. Conrad, P. G., Nishimura, P. T., Aherne, D., Schwartz, B. J., Wu, D., Fang, N., & ... (2003). Functional molecularly imprinted polymer microstructures fabricated using microstereolithography. Advanced Materials, 15(18), 1541–1544.
  358. Yin, X., Fang, N., Zhang, X., Martini, I. B., & Schwartz, B. J. (2003). Near-field multiphoton nanolithography using an apertureless optical probe. Nonlinear Optical Transmission and Multiphoton Processes in Organics 5211 ….
  359. Liu, Z., Fang, N., Yen, T. J., & Zhang, X. (2003). A pathway to subwavelength imaging using a metamaterial superlens. Plasmonics: Metallic Nanostructures and Their Optical Properties, 5221, 116–123.
  360. Srituravanich, W., Fang, N., Sun, C., Luo, Q., & Zhang, X. (2003). Subwavelength nanolithography using surface plasmons. 2003 Third IEEE Conference on Nanotechnology, 2003. IEEE-NANO 2003., 2, 609–611.
  361. Yen, T. J., Fang, N., & Zhang, X. (2003). Department of Mechanical and Aerospace Engineering. Microelectromechanical Systems:(MEMS), 37.
  362. Wu, D., Fang, N., Sun, C., Zhang, X., Padilla, W. J., Basov, D. N., Smith, D. R., & ... (2003). Artificial plasmonic metamaterial fabricated by micro-stereolithography. ASME International Mechanical Engineering Congress and Exposition, 37211, 89–91.
  363. Yen, T. J., Fang, N., & Zhang, X. (2003). Design and Microfabrication of Terahertz Magnetic Metamaterials. ASME International Mechanical Engineering Congress and Exposition, 37211, 37–40.
  364. Yin, X., Fang, N., Zhang, X., Martini, I. B., & Schwartz, B. J. (2002). Near-field two-photon nanolithography using an apertureless optical probe. Applied Physics Letters, 81, 3663–3663.
  365. Wu, D., Fang, N., Sun, C., & Zhang, X. (2002). Adhesion force of polymeric three-dimensional microstructures fabricated by microstereolithography. Applied Physics Letters, 81, 3963–3963.
  366. Manias, E., Chen, J., Fang, N., & Zhang, X. (2001). Polymeric micromechanical components with tunable stiffness. Applied Physics Letters, 79, 1700–1700.
  367. Sun, C., Fang, N., & Zhang, X. (2001). Process modeling of projection micro stereo lithography for three-dimensional MEMS. ASME International Mechanical Engineering Congress and Exposition, 35555, 813–818.
  368. Wu, D., Fang, N., Sun, C., & Zhang, X. (2001). Characterization of drying techniques for micro-stereolithography. ASME International Mechanical Engineering Congress and Exposition, 35555, 831–835.
  369. Fang, N., Zhang, X., & Xi, M. (2001). Nanolithography With a NSOM Tip: Part I—Numerical Simulations. ASME International Mechanical Engineering Congress and Exposition, 35630, 201–208.
  370. Zhang, X., Fang, N., & Sun, C. (2001). Photon transport and photochemical reaction in laser micro-stereolithography. Proceedings of the International Conference on Energy Conversion and ….
  371. Hsia, Y. F., Fang, N., Widatallah, H. M., Wu, D. M., Lee, X. M., & Zhang, J. R. (2000). Brownian motion of suspended particles in an anisotropic medium. Hyperfine Interactions, 126(1), 401–406.
  372. Siu, G. G., Bai, Z. P., Yu, Z., Fang, N., Shi, F. N., Liu, R. C., & You, X. Z. (1999). A study of slow spin-spin relaxation in the intercalation compound FeOCl [FeCp2] 0.16. Materials Chemistry and Physics, 59(2), 168–170.
  373. Widatallah, H. M., Hsia, Y. F., Fang, N., & Lee, X. M. (1996). A Mössbauer study of the Brownian motion of suspended particles in a nematic liquid crystal: the effect of anchored molecular textures. Physics Letters A 215 (5-6), 326–330.

Refereed conference proceedings