[1] Jiali Xuan , Tianxiang Shao, Yue Zang*, Yang Liu, and WenshengYan*, Recent developments of charge transporting layers for high-performance monolithic perovskite/silicon tandem solar cells, IEEE Journal of Photovoltaics, DOI: 10.1109/jphotov.2024.3483266 (2025).
[2] Chenyang Zhu, Yiming Liu*, Donghua Wang, Zhikang Zhu, Yibo Tu, GaoyuanYang, Hongyu Chen, Yue Zang*, Jinxia Du, WenshengYan*, “Exploration of highly stable and highly efficient new lead-free halide perovskite solar cells by machine learning”, Cell Reports Physical Science, 5, 102321 (2024).
[3] Zhikang Zhu, Chenyang Zhu, Yibo Tu, Tianxiang Shao, Yida Wang, Weihong Liu, Yiming Liu*, Yue Zang*, Qingya Wei*, WenshengYan*, Machine-learning-assisted exploration of new non-fullerene acceptors for high-efficiency organic solar cells,Cell Reports Physical Science, 5, 102316 (2024).
[4] Yida Wang, Yue Zang*, Yibo Tu, Weihong Liu, Chenyang Zhu, Peng Zhou, Jinxia Du, WenshengYan*, Efficient and Stable Inverted Perovskite Solar Cells Enabled by Inhibiting Voids via a Green Additive,ACS Applied Materials and Interfaces,16, 64889 (2024).
[5] Weihong Liu, Yue Zang*, Yibo Tu, Yida Wang, Zhikang Zhu, Chenyang Zhu,WenshengYan*, Reconstruction of Hole Transport Layer via Co-Self-Assembled Molecules for High-Performance Inverted Perovskite Solar Cells, Small, https://doi.org/10.1002/smll.202408314 (2024).
[6] Tianxiang Shao,Yue Zang*, Yibo Tu, Yiming Liu, Peng Zhou, Guodong Li, Ruochuan Liu, Gaoyuan Yang, Jingchuan Ye, Chenyang Zhu, Hongyu Chen, Qin Zhou, Yu Wang, WenshengYan*, Modulating vacancy-related defects and hole extraction via a multifunctional additive for high-performance perovskite solar cells, Cell Reports Physical Science, 5, 101996 (2024).
[7] Yue Zang, Yibo Tu, Chuanjia Jiao, Wangnan Li*, Peng Zhou*, Jiahao Cheng, Gaoyuan Yang, Tianxiang Shao, Jingchuan Ye, Guodong Li, Liang Chu, Shaojian Lu, Guijie Liang, Ying Liang, Jingyang Wang, Zhicheng Zhong, Run Hu, WenshengYan*, Green N1 additive modified perovskite precursor enables effective manufacturing of large-area solar cell modules with high efficiency and stability, Chemical Engineering Journal, 480, 148133 (2024).
[8] Yue Zang , Yang Liu, Tianxiang Shao, Jiali Xuan, Bochuan Yang, Yafeng Liu*, Ziyang Hu*, WenshengYan*, Optical design of monolithic two-terminal perovskite/Si tandem solar cellsfor efficient photon management, Materials Today Communications, 2024, 38: 108199.
[9] Yibo Tu, Guodong Li*, Jingchuan Ye, Chunyan Deng, Ruochuan Liu, GaoyuanYang, Tianxiang Shao, Yu Li, Yue Zang*, Yu Wang, Qin Zhou, Jihuai Wu, Wensheng Yan*, Multifunctional Imidazolidinyl Urea Additive Initiated Complex with PbI2 Toward Efficient and Stable Perovskite Solar Cells, Small, 2023, 2309033.
[10] Gaoyuan Yang, Yibo Tu, Jingchuan Ye, Ruochuan Liu, Yue Zang*, Lijian Zhang, Yu Wang, Guodong Li*, Qin Zhou, Liang Chu, Wensheng Yan*, Study on carrier dynamics of perovskite solar cells via transient absorption, Journal of Alloys and Compounds, 2023, 952: 170051.
[11] Wang Yu, Song Jiaxing, Chu Liang, Zang Yue*, Tu Yibo, Ye Jingchuan, Jin Yingzhi, Li Guodong, Li Zaifang*, Yan Wensheng*, Buried solvent assisted perovskite crystallization for efficient and stable inverted solar cells, Journal of Power Sources, 2023, 558: 232626.
[12] Zhou Jintao, Zang Yue*, Wang Yu, Chu Liang, Li Guodong, Xu Rui, and Yan Wensheng*, High-performance Ag nanowires synthesized via the synergy of Cl- and Br- in mixed PVP system for transparent conductive electrodes, Journal of Materials Science: Materials in Electronics, 2023, 34: 467.
[13] Tu Yibo, Ye Jingchuan, Yang Gaoyuan, Zang Yue*, Zhang Lijian, Wang Yu, Li Guodong, Chu Liang*, Yan Wensheng*, Slot-die coating fabrication of perovskite solar cells toward commercialization, Journal of Alloys and Compounds, 2023, 942: 169104.
[14] Liang Ying, Jiao Chuanjia, Zhou Peng, Li Wangnan*, Zang Yue*, Liu Yiming, Yang Gaoyuan, Liu Liu, Cheng Jiahao, Liang Guijie, Wang Jingyang, Zhong Zhicheng, and Yan Wensheng*, Highly efficient perovskite solar cells with light management of surface antireflection, Bulletin of the Chemical Society of Japan, 2023, 96: 148-155.
[15] Zang Yue, Liu Yang, Chen Lingfeng, Xu Rui, Wang Yu, Yan Wensheng*,Optical modeling of microcavity strategy for highly efficient ITO-free organic solar cells with varied photoactive layers, Optical Materials, 2022, 132: 112772.
[16] Zang Yue*, Chen Lingfeng, Zhou Jintao, Xu Rui, Liu Zugang, Enhanced light utilization in semitransparent organic solar cells based on a nonfullerene acceptor of IEICO‑4F, Applied Physics A-Materials Science & Processing, 2021, 128: 889.
[17] Xu Rui, Yang Kai, Zang Yue*, ZnO/Ag/ZnO multilayer transparent electrode for highly-efficient ITO-Free polymer solar cells, Current Applied Physics, 2020, 20(3): 425-430.
[18] Zang Yue*, Xin Qing, Lin Jun, Zhao Jufeng, Cui Guangmang, Design of parallel-connected polymer tandem solar cells using efficient low bandgap PTB7-Th:PC71BM blend, Applied Physics A-Materials Science & Processing, 2019, 125(12): 819.
[19] Zang Yue*, Xin Qing, Zhao Jufeng, Lin Jun, Effect of Active Layer Thickness on the Performance of Polymer Solar Cells Based on a Highly Efficient Donor Material of PTB7-Th, Journal of Physical Chemistry C, 2018, 122(29): 16532-16539.
[20] Zang Yue, Gao Xiumin, Lu Xinmiao, Xin Qing, Lin Jun, and Zhao Jufeng*, Improved performance of polymer solar cells using PBDTT-F-TT:PC71BM blend film as active layer, Applied Surface Science, 2016, 376, 138-144.
[21] Zang Yue, C. Z. Li, C. C. Chueh, S. T. Williams, W. Jiang, Z. H. Wang*, J. S. Yu*, and A. K.-Y. Jen*, Integrated molecular, interfacial, and device engineering towards high-performance non-fullerene based organic solar cells, Advanced Materials, 2014, 26: 5708-5714.