Zhigang Shuai
Zhigang Shuai
E-mail confirmado em tsinghua.edu.cn - Página inicial
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Citado por
Efficient Degradation of Toxic Organic Pollutants with Ni2O3/TiO2-xBx under Visible Irradiation
W Zhao, W Ma, C Chen, J Zhao, Z Shuai
Journal of the American Chemical Society 126 (15), 4782-4783, 2004
Electronic structure and carrier mobility in graphdiyne sheet and nanoribbons: theoretical predictions
M Long, L Tang, D Wang, Y Li, Z Shuai
ACS nano 5 (4), 2593-2600, 2011
Structures, electronic states, photoluminescence, and carrier transport properties of 1, 1-disubstituted 2, 3, 4, 5-tetraphenylsiloles
G Yu, S Yin, Y Liu, J Chen, X Xu, X Sun, D Ma, X Zhan, Q Peng, Z Shuai, ...
Journal of the American Chemical Society 127 (17), 6335-6346, 2005
Tunable band gap photoluminescence from atomically thin transition-metal dichalcogenide alloys
Y Chen, J Xi, DO Dumcenco, Z Liu, K Suenaga, D Wang, Z Shuai, ...
Acs Nano 7 (5), 4610-4616, 2013
Role of dimensionality on the two‐photon absorption response of conjugated molecules: the case of octupolar compounds
D Beljonne, W Wenseleers, E Zojer, Z Shuai, H Vogel, SJK Pond, ...
Advanced Functional Materials 12 (9), 631-641, 2002
Computational methods for design of organic materials with high charge mobility
L Wang, G Nan, X Yang, Q Peng, Q Li, Z Shuai
Chemical Society Reviews 39 (2), 423-434, 2010
Structures, electronic states, and electroluminescent properties of a zinc (II) 2-(2-hydroxyphenyl) benzothiazolate complex
G Yu, S Yin, Y Liu, Z Shuai, D Zhu
Journal of the American Chemical Society 125 (48), 14816-14824, 2003
Excited-state electronic structure of conjugated oligomers and polymers: a quantum-chemical approach to optical phenomena
JL Brédas, J Cornil, D Beljonne, DA Dos Santos, Z Shuai
Accounts of chemical research 32 (3), 267-276, 1999
Charge separation in localized and delocalized electronic states in polymeric semiconductors
A Köhler, DA Dos Santos, D Beljonne, Z Shuai, JL Brédas, AB Holmes, ...
Nature 392 (6679), 903-906, 1998
First-principles prediction of charge mobility in carbon and organic nanomaterials
J Xi, M Long, L Tang, D Wang, Z Shuai
Nanoscale 4 (15), 4348-4369, 2012
Singlet and triplet exciton formation rates in conjugated polymer light-emitting diodes
Z Shuai, D Beljonne, RJ Silbey, JL Brédas
Physical Review Letters 84 (1), 131, 2000
Influences of crystal structures and molecular sizes on the charge mobility of organic semiconductors: oligothiophenes
X Yang, L Wang, C Wang, W Long, Z Shuai
Chemistry of materials 20 (9), 3205-3211, 2008
Size-tunable emission from 1, 3-diphenyl-5-(2-anthryl)-2-pyrazoline nanoparticles
D Xiao, L Xi, W Yang, H Fu, Z Shuai, Y Fang, J Yao
Journal of the American Chemical Society 125 (22), 6740-6745, 2003
Spin− orbit coupling and intersystem crossing in conjugated polymers: a configuration interaction description
D Beljonne, Z Shuai, G Pourtois, JL Bredas
The Journal of Physical Chemistry A 105 (15), 3899-3907, 2001
Toward quantitative prediction of molecular fluorescence quantum efficiency: Role of Duschinsky rotation
Q Peng, Y Yi, Z Shuai, J Shao
Journal of the American Chemical Society 129 (30), 9333-9339, 2007
White light emission from a single organic molecule with dual phosphorescence at room temperature
Z He, W Zhao, JWY Lam, Q Peng, H Ma, G Liang, Z Shuai, BZ Tang
Nature communications 8 (1), 1-8, 2017
An ultra closely π‐stacked organic semiconductor for high performance field‐effect transistors
L Li, Q Tang, H Li, X Yang, W Hu, Y Song, Z Shuai, W Xu, Y Liu, D Zhu
Advanced materials 19 (18), 2613-2617, 2007
Nuclear tunneling effects of charge transport in rubrene, tetracene, and pentacene
G Nan, X Yang, L Wang, Z Shuai, Y Zhao
Physical Review B 79 (11), 115203, 2009
Theoretical predictions of size-dependent carrier mobility and polarity in graphene
MQ Long, L Tang, D Wang, L Wang, Z Shuai
Journal of the American Chemical Society 131 (49), 17728-17729, 2009
Rational molecular design for achieving persistent and efficient pure organic room-temperature phosphorescence
W Zhao, Z He, JWY Lam, Q Peng, H Ma, Z Shuai, G Bai, J Hao, BZ Tang
Chem 1 (4), 592-602, 2016
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