Követés
Wei-Ting Hsu (徐瑋廷)
Wei-Ting Hsu (徐瑋廷)
Department of Physics, National Tsing Hua University
E-mail megerősítve itt: phys.nthu.edu.tw - Kezdőlap
Cím
Hivatkozott rá
Hivatkozott rá
Év
Monolayer MoSe2 Grown by Chemical Vapor Deposition for Fast Photodetection
YH Chang, W Zhang, Y Zhu, Y Han, J Pu, JK Chang, WT Hsu, JK Huang, ...
ACS nano 8 (8), 8582-8590, 2014
6742014
Second harmonic generation from artificially stacked transition metal dichalcogenide twisted bilayers
WT Hsu, ZA Zhao, LJ Li, CH Chen, MH Chiu, PS Chang, YC Chou, ...
ACS nano 8 (3), 2951-2958, 2014
5462014
Bandgap tunability at single-layer molybdenum disulphide grain boundaries
YL Huang, Y Chen, W Zhang, SY Quek, CH Chen, LJ Li, WT Hsu, ...
Nature communications 6 (1), 6298, 2015
4992015
Spectroscopic Signatures for Interlayer Coupling in MoS2–WSe2 van der Waals Stacking
MH Chiu, MY Li, W Zhang, WT Hsu, WH Chang, M Terrones, H Terrones, ...
ACS nano 8 (9), 9649-9656, 2014
3582014
Room‐Temperature Ferroelectricity in Hexagonally Layered α‐In2Se3 Nanoflakes down to the Monolayer Limit
F Xue, W Hu, KC Lee, LS Lu, J Zhang, HL Tang, A Han, WT Hsu, S Tu, ...
Advanced Functional Materials 28 (50), 1803738, 2018
3452018
Multidirection Piezoelectricity in Mono- and Multilayered Hexagonal α-In2Se3
F Xue, J Zhang, W Hu, WT Hsu, A Han, SF Leung, JK Huang, Y Wan, ...
ACS nano 12 (5), 4976-4983, 2018
2912018
Optically initialized robust valley-polarized holes in monolayer WSe2
WT Hsu, YL Chen, CH Chen, PS Liu, TH Hou, LJ Li, WH Chang
Nature communications 6 (1), 8963, 2015
2192015
Evidence of indirect gap in monolayer WSe2
WT Hsu, LS Lu, D Wang, JK Huang, MY Li, TR Chang, YC Chou, ...
Nature communications 8 (1), 929, 2017
1842017
Phonon renormalization in reconstructed MoS2 moiré superlattices
J Quan, L Linhart, ML Lin, D Lee, J Zhu, CY Wang, WT Hsu, J Choi, ...
Nature materials 20 (8), 1100-1105, 2021
1772021
Layered MoS2 grown on c ‐sapphire by pulsed laser deposition
YT Ho, CH Ma, TT Luong, LL Wei, TC Yen, WT Hsu, WH Chang, YC Chu, ...
physica status solidi (RRL)–Rapid Research Letters 9 (3), 187-191, 2015
1622015
Ledge-directed epitaxy of continuously self-aligned single-crystalline nanoribbons of transition metal dichalcogenides
A Aljarb, JH Fu, CC Hsu, CP Chuu, Y Wan, M Hakami, DR Naphade, ...
Nature Materials 19 (12), 1300-1306, 2020
1442020
Band gap-tunable molybdenum sulfide selenide monolayer alloy
SH Su, YT Hsu, YH Chang, MH Chiu, CL Hsu, WT Hsu, WH Chang, JH He, ...
small 10 (13), 2589-2594, 2014
1402014
Negative circular polarization emissions from WSe2/MoSe2 commensurate heterobilayers
WT Hsu, LS Lu, PH Wu, MH Lee, PJ Chen, PY Wu, YC Chou, HT Jeng, ...
Nature communications 9 (1), 1356, 2018
1252018
Moiré potential impedes interlayer exciton diffusion in van der Waals heterostructures
J Choi, WT Hsu, LS Lu, L Sun, HY Cheng, MH Lee, J Quan, K Tran, ...
Science advances 6 (39), eaba8866, 2020
1232020
Controllable synthesis of band-gap-tunable and monolayer transition-metal dichalcogenide alloys
SH Su, WT Hsu, CL Hsu, CH Chen, MH Chiu, YC Lin, WH Chang, ...
Frontiers in Energy Research 2, 27, 2014
1212014
Band alignment of 2D transition metal dichalcogenide heterojunctions
MH Chiu, WH Tseng, HL Tang, YH Chang, CH Chen, WT Hsu, WH Chang, ...
Advanced Functional Materials 27 (19), 1603756, 2017
972017
Tailoring excitonic states of van der Waals bilayers through stacking configuration, band alignment, and valley spin
WT Hsu, BH Lin, LS Lu, MH Lee, MW Chu, LJ Li, W Yao, WH Chang, ...
Science advances 5 (12), eaax7407, 2019
762019
Dielectric impact on exciton binding energy and quasiparticle bandgap in monolayer WS2 and WSe2
WT Hsu, J Quan, CY Wang, LS Lu, M Campbell, WH Chang, LJ Li, X Li, ...
2D Materials 6 (2), 025028, 2019
692019
Carrier Dynamics of Type-II InAs/GaAs Quantum Dots Covered by a Thin GaAs1-xSbx Layer
WH Chang, YA Liao, WT Hsu, MC Lee, PC Chiu, JI Chyi
Applied Physics Letters 93 (3), 033107, 2008
642008
Effects of Thermal Annealing on the Emission Properties of Type-II InAs/GaAsSb Quantum Dots
YA Liao, WT Hsu, PC Chiu, JI Chyi, WH Chang
Applied Physics Letters 94 (5), 053101, 2009
562009
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