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5. Guang Yang, Mengru Wang, Chengbin Fei, Hangyu Gu, Zhengshan J Yu, Abdulwahab Alasfour, Zachary C Holman, Jinsong Huang.Recycling Silicon Bottom Cells from End-of-Life Perovskite–Silicon Tandem Solar Cells.
ACS Energy Letters 2023 8 (3), 1639-1644
6. Cong Chen, Zhaoning Song, Chuanxiao Xiao, Dewei Zhao, Niraj Shrestha, Chongwen Li, Guang Yang, Fang Yao, Xiaolu Zheng, Randy J Ellingson, Chun-Sheng Jiang, Mowafak Al-Jassim, Kai Zhu, Guojia Fang, Yanfa Yan.
Achieving a high open-circuit voltage in inverted wide-bandgap perovskite solar cells with a graded perovskite homojunction. Nano Energy 2019 61, 141-147
7.Hengkai Zhang, Yaokang Zhang, Guang Yang, Zhiwei Ren, Wei Yu, Dong Shen, Chun-Shing Lee, Zijian Zheng, Gang Li. Vacuum-free fabrication of high-performance semitransparent perovskite solar cells via e-glue assisted lamination process. Science China Chemistry 2019 62, 875-882
8. Jiwei Liang, Zhiliang Chen, Guang Yang, Haibing Wang, Feihong Ye, Chen Tao, Guojia Fang. Achieving high open-circuit voltage on planar perovskite solar cells via chlorine-doped tin oxide electron transport layers. ACS Applied Materials & Interfaces 2019 11 (26), 23152-23159
9. Minchao Qin, Kinfai Tse, Tsz‐Ki Lau, Yuhao Li, Chun‐Jen Su, Guang Yang, Jiehuan Chen, Junyi Zhu, U‐Ser Jeng, Gang Li, Hongzheng Chen, Xinhui LuManipulating the mixed‐perovskite crystallization pathway unveiled by in situ GIWAXS. Advanced Materials 2019 31 (25), 1901284
10. Pingli Qin, Jiliang Zhang, Guang Yang, Xueli Yu, Gang Li. Potassium-intercalated rubrene as a dual-functional passivation agent for high efficiency perovskite solar cells. Journal of Materials Chemistry A 2019 7 (4), 1824-1834
11. Guang Yang, Pingli Qin, Guojia Fang, Gang Li. A Lewis base‐assisted passivation strategy towards highly efficient and stable perovskite solar cells. Solar RRL 2018 2 (8), 1800055
12. Liangbin Xiong, Yaxiong Guo, Jian Wen, Hongri Liu, Guang Yang, Pingli Qin, Guojia Fang. Review on the Application of SnO2 in Perovskite Solar Cells. Advanced Functional Materials 2018 28 (35), 1802757
13. Guang Yang, Pingli Qin, Guojia Fang, Gang Li. Tin oxide (SnO2) as effective electron selective layer material in hybrid organic–inorganic metal halide perovskite solar cells. Journal of Energy Chemistry 2018 27 (4), 962-970
14. Guang Yang, Cong Chen, Fang Yao, Zhiliang Chen, Qi Zhang, Xiaolu Zheng, Junjie Ma, Hongwei Lei, Pingli Qin, Liangbin Xiong, Weijun Ke, Gang Li, Yanfa Yan, Guojia Fang. Effective Carrier‐Concentration Tuning of SnO2 Quantum Dot Electron‐Selective Layers for High‐Performance Planar Perovskite Solar Cells. Advanced Materials 2018 30 (14), 1706023
15. Hong Tao, Zhibin Ma, Guang Yang, Haoning Wang, Hao Long, Hongyang Zhao, Pingli Qin, Guojia Fang. Room-temperature processed tin oxide thin film as effective hole blocking layer for planar perovskite solar cells. Applied Surface Science 2018 434, 1336-1343
16. Ping‐Li Qin, Guang Yang, Zhi‐wei Ren, Sin Hang Cheung, Shu Kong So, Li Chen, Jianhua Hao, Jianhui Hou, Gang Li. Stable and efficient organo‐metal halide hybrid perovskite solar cells via π‐conjugated lewis base polymer induced trap passivation and charge extraction. Advanced Materials 2018 30 (12), 1706126
17. Liangbin Xiong, Minchao Qin, Cong Chen, Jian Wen, Guang Yang, Yaxiong Guo, Junjie Ma, Qi Zhang, Pingli Qin, Songzhan Li, Guojia Fang.Fully High‐Temperature‐Processed SnO2 as Blocking Layer and Scaffold for Efficient, Stable, and Hysteresis‐Free Mesoporous Perovskite Solar Cells. Advanced Functional Materials 2018 28 (10), 1706276
18. Junjie Ma, Xiaolu Zheng, Hongwei Lei, Weijun Ke, Cong Chen, Zhiliang Chen, Guang Yang, Guojia Fang. Highly Efficient and Stable Planar Perovskite Solar Cells With Large‐Scale Manufacture of E‐Beam Evaporated SnO2 Toward Commercialization. Solar RRL 2017 1 (10), 1700118
19. Junjie Ma, Guang Yang, Minchao Qin, Xiaolu Zheng, Hongwei Lei, Cong Chen, Zhiliang Chen, Yaxiong Guo, Hongwei Han, Xingzhong Zhao, Guojia Fang. MgO Nanoparticle Modified Anode for Highly Efficient SnO2‐Based Planar Perovskite Solar Cells. Advanced Science 2017 4 (9), 1700031
20. Ping‐Li Qin, Qin He, Cong Chen, Xiao‐Lu Zheng, Guang Yang, Hong Tao, Liang‐Bin Xiong, Lun Xiong, Gang Li, Guo‐Jia Fang. High‐Performance Rigid and Flexible Perovskite Solar Cells with Low‐Temperature Solution‐Processable Binary Metal Oxide Hole‐Transporting Materials. Solar RRL 2017 1 (8), 1700058
21. Xiaolu Zheng, Hongwei Lei, Guang Yang, Weijun Ke, Zhiliang Chen, Cong Chen, Junjie Ma, Quanbing Guo, Fang Yao, Qi Zhang, Hongxing Xu, Guojia Fang. Enhancing efficiency and stability of perovskite solar cells via a high mobility p-type PbS buffer layer. Nano Energy 2017 38, 1-11
22.Hongwei Lei, Guang Yang, Xiaolu Zheng, Zhi‐Guo Zhang, Cong Chen, Junjie Ma, Yaxiong Guo, Zhiliang Chen, Pingli Qin, Yongfang Li, Guojia Fang. Incorporation of High-Mobility and Room-Temperature-Deposited CuxS as a Hole Transport Layer for Efficient and Stable Organo-Lead Halide Perovskite Solar Cells. Solar RRL 2017 1 (6), 1700038
23. Zhiliang Chen, Guang Yang, Xiaolu Zheng, Hongwei Lei, Cong Chen, Junjie Ma, Hao Wang, Guojia Fang. Bulk heterojunction perovskite solar cells based on room temperature deposited hole-blocking layer: suppressed hysteresis and flexible photovoltaic application. Journal of Power Sources 2017 351, 123-129
24. Zhao Chen, Borui Li, Xiaoming Mo, Songzhan Li, Jian Wen, Hongwei Lei, Ziqiang Zhu, Guang Yang, Pengbin Gui, Fang Yao, Guojia Fang. Self-powered narrowband p-NiO/n-ZnO nanowire ultraviolet photodetector with interface modification of Al2O3. Applied Physics Letters 2017 110 (12)
25. Xiaolu Zheng, Yulong Wang, Jiahua Hu, Guang Yang, Zhen Guo, Jianlong Xia, Zongxiang Xu, Guojia Fang. Octamethyl-substituted Pd (II) phthalocyanine with long carrier lifetime as a dopant-free hole selective material for performance enhancement of perovskite solar cells. Journal of Materials Chemistry A 2017 5 (46), 24416-24424
26. Cong Chen, Guang Yang, Junjie Ma, Xiaolu Zheng, Zhiliang Chen, Qi Zhang, Guojia Fang. Surface treatment via Li-bis-(trifluoromethanesulfonyl) imide to eliminate the hysteresis and enhance the efficiency of inverted perovskite solar cells. Journal of Materials Chemistry C 2017 5 (39), 10280-10287
27. Yaxiong Guo, Hongwei Lei, Liangbin Xiong, Borui Li, Zhao Chen, Jian Wen, Guang Yang, Gang Li, Guojia Fang. Single phase, high hole mobility Cu 2 O films as an efficient and robust hole transporting layer for organic solar cells. Journal of Materials Chemistry A 2017 5 (22), 11055-11062
28. Guang Yang, Changlei Wang, Hongwei Lei, Xiaolu Zheng, Pingli Qin, Liangbin Xiong, Xingzhong Zhao, Yanfa Yan, Guojia Fang. Interface engineering in planar perovskite solar cells: energy level alignment, perovskite morphology control and high performance achievement. Journal of Materials Chemistry A 5 (4), 1658-1666
29. Guang Yang, Hongwei Lei, Hong Tao, Xiaolu Zheng, Junjie Ma, Qin Liu, Weijun Ke, Zhiliang Chen, Liangbin Xiong, Pingli Qin, Zhao Chen, Minchao Qin, Xinhui Lu, Yanfa Yan, Guojia Fang. Reducing Hysteresis and Enhancing Performance of Perovskite Solar Cells Using Low-Temperature Processed Y-Doped SnO2 Nanosheets as Electron Selective Layers. Small 2017 13 (2), 1601769
30. Guang Yang, Yu-Long Wang, Jia-Ju Xu, Hong-Wei Lei, Cong Chen, Hai-Quan Shan, Xiao-Yuan Liu, Zong-Xiang Xu, Guo-Jia Fang. A facile molecularly engineered copper (II) phthalocyanine as hole transport material for planar perovskite solar cells with enhanced performance and stability. Nano Energy 2017 31, 322-330
31. Qin Liu, Min‐Chao Qin, Wei‐Jun Ke, Xiao‐Lu Zheng, Zhao Chen, Ping‐Li Qin, Liang‐Bin Xiong, Hong‐Wei Lei, Jia‐Wei Wan, Jian Wen, Guang Yang, Jun‐Jie Ma, Zhen‐Yu Zhang, Guo‐Jia Fang. Enhanced Stability of Perovskite Solar Cells with Low‐Temperature Hydrothermally Grown SnO2 Electron Transport Layers. Advanced Functional Materials 2016 26 (33), 6069-6075
32. Ping‐Li Qin, Hong‐Wei Lei, Xiao‐Lu Zheng, Qin Liu, Hong Tao, Guang Yang, Wei‐Jun Ke, Liang‐Bin Xiong, Ming‐Chao Qin, Xing‐Zhong Zhao, Guo‐Jia Fang. Copper‐Doped Chromium Oxide Hole‐Transporting Layer for Perovskite Solar Cells: Interface Engineering and Performance Improvement. Advanced Materials Interfaces 2016 3 (14), 1500799
33. Minchao Qin, Junjie Ma, Weijun Ke, Pingli Qin, Hongwei Lei, Hong Tao, Xiaolu Zheng, Liangbin Xiong, Qin Liu, Zhiliang Chen, Junzheng Lu, Guang Yang, Guojia Fang. Perovskite solar cells based on low-temperature processed indium oxide electron selective layers. ACS Applied Materials & Interfaces 2016 8 (13), 8460-8466
34. Hongwei Lei, Guang Yang, Yaxiong Guo, Liangbin Xiong, Pingli Qin, Xin Dai, Xiaolu Zheng, Weijun Ke, Hong Tao, Zhao Chen, Borui Li, Guojia Fang. Efficient planar Sb2S3 solar cells using a low-temperature solution-processed tin oxide electron conductor. Physical Chemistry Chemical Physics 2016 18 (24), 16436-16443
35. Liangbin Xiong, Minchao Qin, Guang Yang, Yaxiong Guo, Hongwei Lei, Qin Liu, Weijun Ke, Hong Tao, Pingli Qin, Songzhan Li, Huaqing Yu, Guojia Fang. Performance enhancement of high temperature SnO 2-based planar perovskite solar cells: electrical characterization and understanding of the mechanism. Journal of Materials Chemistry A 2016 4 (21), 8374-8383
36. Guang Yang, Hong Tao, Pingli Qin, Weijun Ke, Guojia Fang. Recent progress in electron transport layers for efficient perovskite solar cells. Journal of Materials Chemistry A 2016 4 (11), 3970-3990
37. Hong Tao, Weijun Ke, Jing Wang, Qin Liu, Jiawei Wan, Guang Yang, Guojia Fang. Perovskite solar cell based on network nanoporous layer consisted of TiO2 nanowires and its interface optimization. Journal of Power Sources 2015 290, 144-152
38. Weijun Ke, Guojia Fang, Qin Liu, Liangbin Xiong, Pingli Qin, Hong Tao, Jing Wang, Hongwei Lei, Borui Li, Jiawei Wan, Guang Yang, Yanfa Yan. Low-temperature solution-processed tin oxide as an alternative electron transporting layer for efficient perovskite solar cells. Journal of the American Chemical Society 2015 137 (21), 6730-6733
39. Weijun Ke, Guojia Fang, Jiawei Wan, Hong Tao, Qin Liu, Liangbin Xiong, Pingli Qin, Jing Wang, Hongwei Lei, Guang Yang, Minchao Qin, Xingzhong Zhao, Yanfa Yan. Efficient hole-blocking layer-free planar halide perovskite thin-film solar cells. Nature Communications 2015 6 (1), 6700