Gang Tang
Gang Tang
Université de Liège
Verified email at - Homepage
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Highly efficient electron transport obtained by doping PCBM with graphdiyne in planar-heterojunction perovskite solar cells
C Kuang, G Tang, T Jiu, H Yang, H Liu, B Li, W Luo, X Li, W Zhang, F Lu, ...
Nano letters 15 (4), 2756-2762, 2015
Manipulation of facet orientation in hybrid perovskite polycrystalline films by cation cascade
G Zheng, C Zhu, J Ma, X Zhang, G Tang, R Li, Y Chen, L Li, J Hu, J Hong, ...
Nature communications 9 (1), 1-11, 2018
Interface Modification of ZnO-Based Inverted PTB7:PC71BM Organic Solar Cells by Cesium Stearate and Simultaneous Enhancement of Device Parameters
G Wang, T Jiu, G Tang, J Li, P Li, X Song, F Lu, J Fang
ACS Sustainable Chemistry & Engineering 2 (5), 1331-1337, 2014
Transport Properties and High Thermopower of SnSe2: A Full Ab-Initio Investigation
Y Ding, B Xiao, G Tang, J Hong
The Journal of Physical Chemistry C 121 (1), 225-236, 2017
VASPKIT: A User-friendly Interface Facilitating High-throughput Computing and Analysis Using VASP Code
V Wang, N Xu, JC Liu, G Tang, WT Geng
arXiv preprint arXiv:1908.08269, 2019
Layered Halide Double Perovskites Cs3+nM(II)nSb2X9+3n (M = Sn, Ge) for Photovoltaic Applications
G Tang, Z Xiao, H Hosono, T Kamiya, D Fang, J Hong
The journal of physical chemistry letters 9 (1), 43-48, 2018
Revealing the role of thiocyanate anion in layered hybrid halide perovskite (CH3NH3)2Pb(SCN)2I2
G Tang, C Yang, A Stroppa, D Fang, J Hong
The Journal of chemical physics 146 (22), 224702, 2017
A thermodynamically favored crystal orientation in mixed formamidinium/methylammonium perovskite for efficient solar cells
Z Xu, Z Liu, N Li, G Tang, G Zheng, C Zhu, Y Chen, L Wang, Y Huang, L Li, ...
Advanced Materials 31 (24), 1900390, 2019
Improving efficiency of planar hybrid CH3NH3PbI3− xClx perovskite solar cells by isopropanol solvent treatment
X Wang, X Li, G Tang, L Zhao, W Zhang, T Jiu, J Fang
Organic Electronics 24, 205-211, 2015
Solvents induced ZnO nanoparticles aggregation associated with their interfacial effect on organic solar cells
P Li, T Jiu, G Tang, G Wang, J Li, X Li, J Fang
ACS applied materials & interfaces 6 (20), 18172-18179, 2014
Enhanced piezo-response in copper halide perovskites based PVDF composite films
S Huang, G Tang, H Huang, X Wu, P Zhou, L Zou, L Xie, J Deng, X Wang, ...
Science Bulletin 63 (19), 1254-1259, 2018
Half-metallicity in two-dimensional Co2Se3 monolayer with superior mechanical flexibility
P Lv, G Tang, C Yang, J Deng, Y Liu, X Wang, X Wang, J Hong
2D Materials 5 (4), 045026, 2018
Designing two-dimensional properties in three-dimensional halide perovskites via orbital engineering
G Tang, Z Xiao, J Hong
The journal of physical chemistry letters 10 (21), 6688-6694, 2019
Non-monotonic thickness dependence of Curie temperature and ferroelectricity in two-dimensional SnTe film
C Yang, Y Liu, G Tang, X Wang, J Hong
Applied Physics Letters 113 (8), 082905, 2018
Direct Tuning of the Band Gap via Electronically-Active Organic Cations and Large Piezoelectric Response in One-Dimensional Hybrid Halides from First-Principles
G Tang, J Hong
Journal of Materials Chemistry C, 2018
Mechanical Properties of Formamidinium Halide Perovskites FABX3 (FA= CH (NH2) 2; B= Pb, Sn; X= Br, I) by First-Principles Calculations
L Guo, G Tang, J Hong
Chinese Physics Letters 36 (5), 056201, 2019
Electronic and hyperbolic dielectric properties of heterostructures
L Zhang, W Yu, Q Wang, JY Ou, B Wang, G Tang, X Jia, X Yang, G Wang, ...
Physical Review B 100 (16), 165304, 2019
First-principles study of the structural, electronic, magnetic, and ferroelectric properties of a charge-ordered iron(ii)-iron(iii) formate framework
G Tang, W Ren, J Hong, A Stroppa
The Journal of Chemical Physics 151 (12), 124704, 2019
Structural transition, metallization, and superconductivity in quasi-two-dimensional layered under compression
W Lei, W Wang, X Ming, S Zhang, G Tang, X Zheng, H Li, C Autieri
Physical Review B 101 (20), 205149, 2020
Structural stability and optoelectronic properties of tetragonal MAPbI3 under strain
L Guo, G Xu, G Tang, D Fang, J Hong
Nanotechnology 31 (22), 225204, 2020
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