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Chunqing Ma
Chunqing Ma
UCLA, Sungkyunkwan University, City Univeristy of Hong Kong
Zweryfikowany adres z g.ucla.edu
Tytuł
Cytowane przez
Cytowane przez
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2D perovskites with short interlayer distance for high‐performance solar cell application
C Ma, D Shen, TW Ng, MF Lo, CS Lee
Advanced Materials 30 (22), 1800710, 2018
3672018
Unveiling facet-dependent degradation and facet engineering for stable perovskite solar cells
C Ma, FT Eickemeyer, SH Lee, DH Kang, SJ Kwon, M Grätzel, NG Park
Science 379 (6628), 173-178, 2023
2212023
A realistic methodology for 30% efficient perovskite solar cells
C Ma, NG Park
Chem 6 (6), 1254-1264, 2020
2112020
Photovoltaically top-performing perovskite crystal facets
C Ma, MC Kang, SH Lee, SJ Kwon, HW Cha, CW Yang, NG Park
Joule 6 (11), 2626-2643, 2022
1462022
18% high‐efficiency air‐processed perovskite solar cells made in a humid atmosphere of 70% RH
Y Cheng, X Xu, Y Xie, HW Li, J Qing, C Ma, CS Lee, F So, SW Tsang
Solar RRL 1 (9), 1700097, 2017
1372017
Paradoxical approach with a hydrophilic passivation layer for moisture-stable, 23% efficient perovskite solar cells
C Ma, NG Park
ACS Energy Letters 5 (10), 3268-3275, 2020
1352020
Ultraviolet-ozone surface modification for non-wetting hole transport materials based inverted planar perovskite solar cells with efficiency exceeding 18%
X Xu, C Ma, Y Cheng, YM Xie, X Yi, B Gautam, S Chen, HW Li, CS Lee, ...
Journal of Power Sources 360, 157-165, 2017
1302017
Acid dissociation constant: a criterion for selecting passivation agents in perovskite solar cells
SH Lee, S Jeong, S Seo, H Shin, C Ma, NG Park
ACS Energy Letters 6 (4), 1612-1621, 2021
1182021
Air-processed mixed-cation Cs 0.15 FA 0.85 PbI 3 planar perovskite solar cells derived from a PbI 2–CsI–FAI intermediate complex
X Xu, C Ma, YM Xie, Y Cheng, Y Tian, M Li, Y Ma, CS Lee, SW Tsang
Journal of Materials Chemistry A 6 (17), 7731-7740, 2018
952018
Complexation of polyaniline and graphene for efficient counter electrodes in dye-sensitized solar cells: Enhanced charge transfer ability
B He, Q Tang, M Wang, C Ma, S Yuan
Journal of Power Sources 256, 8-13, 2014
792014
High performance low-dimensional perovskite solar cells based on a one dimensional lead iodide perovskite
C Ma, D Shen, B Huang, X Li, WC Chen, MF Lo, P Wang, ...
Journal of Materials Chemistry A, 2019
702019
Efficient quasi-solid-state dye-sensitized solar cells from graphene incorporated conducting gel electrolytes
S Yuan, Q Tang, B Hu, C Ma, J Duan, B He
Journal of Materials Chemistry A 2 (8), 2814-2821, 2014
682014
Facet engineering for stable, efficient perovskite solar cells
C Ma, M Grätzel, NG Park
ACS Energy Letters 7 (9), 3120-3128, 2022
632022
Magnetic-field-induced dielectric behaviors and magneto-electrical coupling of multiferroic compounds containing cobalt ferrite/barium calcium titanate composite fibers
D Zhang, J Cheng, J Chai, J Deng, R Ren, Y Su, H Wang, C Ma, CS Lee, ...
Journal of Alloys and Compounds 740, 1067-1076, 2018
522018
FA‐assistant iodide coordination in organic–inorganic wide‐bandgap perovskite with mixed halides
YM Xie, Z Zeng, X Xu, C Ma, Y Ma, M Li, CS Lee, SW Tsang
Small 16 (10), 1907226, 2020
512020
Revealing the crystallization process and realizing uniform 1.8 eV MA-based wide-bandgap mixed-halide perovskites via solution engineering
YM Xie, C Ma, X Xu, M Li, Y Ma, J Wang, HT Chandran, CS Lee, ...
Nano Research 12, 1033-1039, 2019
492019
A simple method for phase control in two-dimensional perovskite solar cells
C Ma, MF Lo, CS Lee
Journal of Materials Chemistry A 6 (39), 18871-18876, 2018
482018
Facet-dependent passivation for efficient perovskite solar cells
C Ma, MC Kang, SH Lee, Y Zhang, DH Kang, W Yang, P Zhao, SW Kim, ...
Journal of the American Chemical Society 145 (44), 24349-24357, 2023
432023
Direct observation of cation-exchange in liquid-to-solid phase transformation in FA 1− x MA x PbI 3 based perovskite solar cells
YM Xie, B Yu, C Ma, X Xu, Y Cheng, S Yuan, ZK Wang, HT Chandran, ...
Journal of Materials Chemistry A 6 (19), 9081-9088, 2018
412018
Dynamic halide perovskite heterojunction generates direct current
C Ma, B Kim, SW Kim, NG Park
Energy & Environmental Science 14 (1), 374-381, 2021
402021
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