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Li Wang
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Year
High-performance polymer heterojunction solar cells of a polysilafluorene derivative
E Wang, L Wang, L Lan, C Luo, W Zhuang, J Peng, Y Cao
Applied Physics Letters 92 (3), 2008
6382008
Method for obtaining high-quality boundary for semiconductor devices fabricated on a partitioned substrate
L Wang, F Jiang
US Patent 8,426,325, 2013
1102013
Method for fabricating robust light-emitting diodes
L Wang, F Jiang
US Patent 8,222,063, 2012
932012
Thermal-responsive, super-strong, ultrathin firewalls for quenching thermal runaway in high-energy battery modules
L Li, C Xu, R Chang, C Yang, C Jia, L Wang, J Song, Z Li, F Zhang, ...
Energy Storage Materials 40, 329-336, 2021
892021
Roles of V-shaped pits on the improvement of quantum efficiency in InGaN/GaN multiple quantum well light-emitting diodes
Z Quan, L Wang, C Zheng, J Liu, F Jiang
Journal of Applied Physics 116 (18), 2014
872014
The characteristics of GaN-based blue LED on Si substrate
C Xiong, F Jiang, W Fang, L Wang, C Mo, H Liu
Journal of luminescence 122, 185-187, 2007
622007
Broadening mechanisms and self-consistent gain calculations for GaN quantum cascade laser structures
K Wang, T Grange, TT Lin, L Wang, Z Jéhn, S Birner, J Yun, W Terashima, ...
Applied Physics Letters 113 (6), 2018
182018
Short-period scattering-assisted terahertz quantum cascade lasers operating at high temperatures
L Wang, TT Lin, K Wang, T Grange, S Birner, H Hirayama
Scientific reports 9 (1), 9446, 2019
162019
Optimization of terahertz quantum cascade lasers by suppressing carrier leakage channel via high-energy state
TT Lin, L Wang, K Wang, T Grange, H Hirayama
Applied Physics Express 11 (11), 112702, 2018
122018
Inhomogeneous nitrogen incorporation effects on the transport properties of GaAsN grown by CBE
L Wang, O Elleuch, Y Shirahata, N Kojima, Y Ohshita, M Yamaguchi
Journal of Crystal Growth 437, 6-9, 2016
102016
Plasma assisted molecular beam epitaxy growth mechanism of AlGaN epilayers and strain relaxation on AlN templates
Z Li, P Shao, Y Wu, G Shi, T Tao, Z Xie, P Chen, Y Zhou, X Xiu, D Chen, ...
Japanese Journal of Applied Physics 60 (7), 075504, 2021
82021
H2–CH4 mixed gas plasma treatment on LP-MOCVD ZnO: B for amorphous silicon thin film solar cells
L Wang, X Zhang, X Yang, C Wei, X Chen, Y Zhao
Solar energy materials and solar cells 116, 231-237, 2013
82013
Step-flow growth of Al droplet free AlN epilayers grown by plasma assisted molecular beam epitaxy
P Shao, S Li, Z Li, H Zhou, D Zhang, T Tao, Y Yan, Z Xie, K Wang, D Chen, ...
Journal of Physics D: Applied Physics 55 (36), 364002, 2022
72022
Investigation of H2/CH4 mixed gas plasma post-etching process for ZnO: B front contacts grown by LP-MOCVD method in silicon-based thin-film solar cells
L Wang, X Zhang, Y Zhao, T Yamada, Y Naito
Applied surface science 316, 508-514, 2014
72014
Terahertz quantum cascade laser considering compositional interdiffusion effect
L Wang, TT Lin, M Chen, K Wang, H Hirayama
Applied Physics Express 16 (3), 032007, 2023
62023
Leakages suppression by isolating the desired quantum levels for high-temperature terahertz quantum cascade lasers
L Wang, TT Lin, M Chen, K Wang, H Hirayama
Scientific Reports 11 (1), 23634, 2021
52021
Engineering of electron–longitudinal optical phonon coupling strength in m-plane GaN terahertz quantum cascade lasers
L Wang, TT Lin, MX Chen, K Wang, H Hirayama
Applied Physics Express 14 (11), 112003, 2021
52021
Parasitic transport paths in two-well scattering-assisted terahertz quantum cascade lasers
L Wang, TT Lin, K Wang, H Hirayama
Applied Physics Express 12 (8), 082003, 2019
52019
Controlling loss of waveguides for potential GaN terahertz quantum cascade lasers by tuning the plasma frequency of doped layers
K Wang, TT Lin, L Wang, W Terashima, H Hirayama
Japanese Journal of Applied Physics 57 (8), 081001, 2018
52018
Over One Watt Output Power Terahertz Quantum Cascade Lasers by Using High Doping Concentration and Variable Barrier‐Well Height
TT Lin, L Wang, K Wang, T Grange, S Birner, H Hirayama
physica status solidi (RRL)–Rapid Research Letters 16 (7), 2200033, 2022
42022
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