Micro-light-emitting diodes with quantum dots in display technology Z Liu, CH Lin, BR Hyun, CW Sher, Z Lv, B Luo, F Jiang, T Wu, CH Ho, ... Light: Science & Applications 9 (1), 83, 2020 | 532 | 2020 |
Giant optical anisotropy of perovskite nanowire array films CH Lin, CY Kang, TZ Wu, CL Tsai, CW Sher, X Guan, PT Lee, T Wu, ... Advanced Functional Materials 30 (14), 1909275, 2020 | 108 | 2020 |
Single-ZnO-nanowire memory YD Chiang, WY Chang, CY Ho, CY Chen, CH Ho, SJ Lin, TB Wu, JH He IEEE Transactions on Electron Devices 58 (6), 1735-1740, 2011 | 83 | 2011 |
The study of electrical characteristics of heterojunction based on ZnO nanowires using ultrahigh-vacuum conducting atomic force microscopy JH He, CH Ho Applied Physics Letters 91 (23), 2007 | 79 | 2007 |
Highly Efficient and Stable White Light-Emitting Diode Using Perovskite Quantum Dot Paper HCKJHH J3. C.-Y. Kang, C.-H. Lin, C.-H. Lin, T.-Y. Li, S.-W. H. Chen, C.-L ... Advanced Science, 2019 | 76 | 2019 |
Polymer functionalized ZnO nanobelts as oxygen sensors with a significant response enhancement JH He, CH Ho, CY Chen Nanotechnology 20 (6), 065503, 2009 | 70 | 2009 |
Designed growth and patterning of perovskite nanowires for lasing and wide color gamut phosphors with long-term stability CH Lin, TY Li, J Zhang, ZY Chiao, PC Wei, HC Fu, L Hu, MJ Yu, ... Nano Energy 73, 104801, 2020 | 56 | 2020 |
Growth of crossed ZnO nanorod networks induced by polar substrate surface JH He, CH Ho, CW Wang, Y Ding, LJ Chen, ZL Wang Crystal Growth and Design 9 (1), 17-19, 2009 | 44 | 2009 |
A thermal sensor and switch based on a plasma polymer/ZnO suspended nanobelt bimorph structure JH He, S Singamaneni, CH Ho, YH Lin, ME McConney, VV Tsukruk Nanotechnology 20 (6), 065502, 2009 | 37 | 2009 |
An Enhanced Voltage Programming Pixel Circuit for Compensating GB-induced Variations in Poly-Si TFTs for AMOLED Displays C Ho, C Lu, K Roy Journal of Display Technology 10 (5), 345-351, 2014 | 29 | 2014 |
Micro‐light‐emitting diodes based on InGaN materials with quantum dots Z Liu, BR Hyun, Y Sheng, CJ Lin, M Changhu, Y Lin, CH Ho, JH He, ... Advanced Materials Technologies 7 (6), 2101189, 2022 | 28 | 2022 |
Self-organized Al nanotip electrodes for achieving ultralow-power and error-free memory JRD Retamal, CH Ho, KT Tsai, J Ke, JH He IEEE Transactions on Electron Devices 66 (2), 938-943, 2019 | 28 | 2019 |
Touch display panel and touch sensing substrate CH Tsai, CH Ho US Patent 9,075,485, 2015 | 26 | 2015 |
A physical model for grain-boundary-induced threshold voltage variation in polysilicon thin-film transistors CH Ho, G Panagopoulos, K Roy IEEE transactions on electron devices 59 (9), 2396-2402, 2012 | 24 | 2012 |
A fully transparent resistive memory for harsh environments PK Yang, CH Ho, DH Lien, JR Durán Retamal, CF Kang, KM Chen, ... Scientific reports 5 (1), 15087, 2015 | 23 | 2015 |
Ultra-thin dielectric breakdown in devices and circuits: A brief review CH Ho, SY Kim, K Roy Microelectronics Reliability 55 (2), 308-317, 2015 | 23 | 2015 |
A compact SPICE model for statistical post-breakdown gate current increase due to TDDB SY Kim, G Panagopoulos, CH Ho, M Katoozi, E Cannon, K Roy 2013 IEEE International Reliability Physics Symposium (IRPS), 2A. 2.1-2A. 2.4, 2013 | 23 | 2013 |
Effect of ultraviolet illumination on metal oxide resistive memory JRD Retamal, CF Kang, CH Ho, JJ Ke, WY Chang, JH He Applied Physics Letters 105 (25), 2014 | 21 | 2014 |
Raman selection rule for surface optical phonons in ZnS nanobelts CH Ho, P Varadhan, HH Wang, CY Chen, X Fang, JH He Nanoscale 8 (11), 5954-5958, 2016 | 19 | 2016 |
Self-formed conductive nanofilaments in (Bi, Mn) Ox for ultralow-power memory devices CF Kang, WC Kuo, W Bao, CH Ho, CW Huang, WW Wu, YH Chu, ... Nano Energy 13, 283-290, 2015 | 18 | 2015 |