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Journal Publications:

1.        (Feature paper) F. Gou, E. L. Hsiang, G. Tan, Y. F. Lan, C. Y. Tsai, and S. T. Wu, “Tripling the optical efficiency of color-converted micro-LED displays with funnel-tube array,” Crystals 9(1), 39 (2019).

2.        (Review paper) Y. H. Lee, T. Zhan, and S. T. Wu, “Prospects and challenges in augmented reality displays,” Virtual Reality & Intelligence Hardware 1(1), 10-20 (2019).

3.        R. Chen, Y. H. Lee, T. Zhan, K. Yin, Z. An, and S. T. Wu, “Multi-stimuli-responsive self-organized liquid crystal Bragg gratings,” Adv. Opt. Mater.  7, 1900101 (2019).

4.        (Review paper) Z. He, C. Zhang, Y. Dong, and S. T. Wu, “Emerging Perovskite Nanocrystals-Enhanced Solid-State Lighting and Liquid-Crystal Displays,” Crystals 9(2), 59 (2019).

5.        Z. He, C. Zhang, H. Chen, Y. Dong, and S. T. Wu, “Perovskite downconverters for efficient, excellent color-rendering, and circadian solid-state lighting,” Nanomaterials 9(2), 176 (2019).

6.        T. Zhan, J. Xiong, Y. H. Lee, and S. T. Wu, “Fabrication of Pancharatnam-Berry phase optical elements with highly stable polarization holography,” Opt. Express 27(3), 2632-2642 (2019).

7.        J. R. Talukder, Y. H. Lee, and S. T. Wu, “Photo-responsive dye-doped liquid crystals for smart windows,” Opt. Express 27(4), 4480-4487 (2019).

8.        K. Yin, Y. H. Lee, Z. He, and S. T. Wu, “Stretchable, flexible, rollable, and adherable polarization volume grating film,” Opt. Express 27(4), 5814-5823 (2019).

9.        R. Chen, Y. Huang, J. Li, M. Hu, J. Li, X. Chen, P. Chen, S. T. Wu and Z. An, “High-frame-rate liquid crystal phase modulator for augmented reality displays,” Liq. Cryst. 46(2), 309-315 (2019).

10.     Y. H. Lee, Z. He, and S. T. Wu, “Optical properties of reflective liquid crystal polarization volume gratings,” J. Opt. Soc. America B, 36(5), D9-D12 (2019).

11.     (Invited paper) T. Zhan, Y.H. Lee, G. Tan, J. Xiong, K. Yin, F. Gou, J. Zou, N. Zhang, D. Zhao, J. Yang, S. Liu, and S. T. Wu, “Pancharatnam-Berry optical elements for head-up and near-eye displays,” J. Opt. Soc. America B, 36(5), D52-D65 (2019).

12.     Y. Li, Y. Liu, S. Li, P. Zhou, T. Zhan, Q. Chen, Y. Su, and S. T. Wu, “Single-exposure fabrication of tunable Pancharatnam-Berry devices using a dye- doped liquid crystal,” Opt. Express 27(6), 9054-9060 (2019).

13.     (Distinguished paper) F. Gou, E. L. Hsiang, G. Tan, Y. F. Lan, C. Y. Tsai, and S. T. Wu, “High performance color-converted micro-LED displays,” J. SID 27(4), 199-206 (2019).

14.     (Distinguished paper) T. Zhan, Y. H. Lee, J. Xiong, G. Tan, K. Yin, J. Yang, S. Liu, and S. T. Wu, “High-efficiency switchable optical elements for advanced head-up displays,” J. SID 27(4), 223-231 (2019).

15.     (Distinguished paper) K. Yin, Y. H. Lee, Z. He, and S. T. Wu, “Stretchable, flexible, and adherable polarization volume grating film for waveguide-based augmented reality displays,” J. SID 27(4), 232-237 (2019).

16.     (Invited paper) Z. He, G. Tan, D. Chanda, and S. T. Wu, “Novel liquid crystal photonic devices enabled by two-photon polymerization,” Opt. Express 27(8), 11472-11491 (2019).

17.     (Invited paper) Y. Huang, G. Tan, F. Gou, M. C. Li, S. L. Lee, and S. T. Wu, “Prospects and challenges of mini-LED and micro-LED displays,” J. SID, 27, xxx (2019). DOI: 10.1002/jsid.760

18.     (Cover page) H. Chen, Z. He, D. Zhang, C. Zhang, Y. Ding, L. Tetard, S. T. Wu, and Y. Dong, “Bright quantum dots light-emitting diodes enabled by imprinted speckle image holography nanostructures,” J. Phys. Chem. Lett. (Accepted, 2019).

19.     C. Zhang, Z. He, H. Chen, L. Zhou, G. Tan, S. T. Wu, and Y. Dong, “Light diffusing, down-converting perovskite-on-polymer microspheres,” J. Mater. Chem. C. (Accepted, 2019).

20.     J. R. Talukder, Y. Huang, and S. T. Wu, “High performance LCD for augmented reality and virtual reality displays,” Liq. Cryst. 46, xxx (2019).
DOI: 10.1080/02678292.2018.1540067

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