- [22] Yifan Su, Jiawang Che, Xiaochen Fen, Yanqing Wang*, Xiang Li, Zhiping Fang, Min Fan, Dongchen Guo, Hui Dai, Chengwu Shi*. Synergetic chemical passivation and energy level alignment via multifunctional polyurethane for high-efficiency Sb2S3 solar cells:Chemical Engineering Journal,2026
- [21] Yanqing Wang*, Dongchen Guo, Zhiping Fang, Min Fan, Zhenhao Yan, Fuling Guo, Wangchao Chen*, Yuan Gao*, Tongqi Ye, Chengwu Shi. rGO-regulated chemical bath deposition of Sb2S3 thin films for outdoor and indoor photovoltaics:Optical Materials, 2026, 178, 118251,2026
- [20] Min Fan; Yanqing Wang*; Hui Dai; Dongchen Guo; Zhiping Fang; Chenrui Ji; Yifan Sun; Xiaochen Feng; Tongqi Ye; Chengwu Shi*. Disulfide-Bond-Containing Polyurethane as an Interface Layer for Efficient and Stable Antimony Selenosulfide Solar Cells:ACS Applied Energy Materials, 2026, 9(7), 4533-4541,2026
- [19] Mengzhu Li, Yanqing Wang*, Zhiping Fang, Dongchen Guo, Min Fan, Hui Dai, Fuling Guo, Wangchao Chen, Chengwu Shi*, Peng Cui*. In situ polymerization-assisted grain growth of Sb2(S,Se)3 on Cd-free TiO2 for efficient solar cells:Solar Energy Materials and Solar Cells, 2026, 296, 114083
- [18] Fuling Guo*, Guiju Hu, Nianwei He, Dongchen Guo, Ge Yao, Xingpei Liu*, Wangchao Chen, Chengwu Shi, Yanqing Wang*. Design of Y-doped TiO2 buried layer for antimony sulfide indoor photovoltaics:Renewable Energy, 2026, 256, 124707
- [17] Yanqing Wang*, Guiju Hu, Nianwei He, Dongchen Guo, Xingpei Liu, Ge Yao*, Wangchao Chen, Chengwu Shi, Fuling Guo*. Optimizing a TiO2 interlayer beneath CdS for efficient Sb2S3 indoor photovoltaics:Solar Energy, 2025, 301, 113966
- [16] Yanqing Wang*, Mengzhu Li, Dongchen Guo, Min Fan, Jingjun Zhang, Juan Guo, Hongzhan Dong, Chengwu Shi*. Poly(acrylic acid)-modified SnO2/CdS double electron transport layers for efficient and stable Sb2(S,Se)3 solar cells:Solar Energy Materials and Solar Cells, 2025, 281, 113322
- [15] Guiju Hu, Chengwu Shi*, Bo Yang, Zihao Wang, Kai Lv, Yanqing Wang*, Fuling Guo, Wangchao Chen. The preferential orientation controlling for efficient Sb2S3 and low Se content Sb2SeyS3-y indoor photovoltaics:Materials Today Energy, 2024, 45, 101670
- [14] Kai Lv, Chengwu Shi*, Nianwei He, Zihao Wang, Changsheng Ye, Yanqing Wang*, Guiju Hu, Fuling Guo, Wangchao Chen*. Composition engineering of antimony selenosulfide films using hydrothermal method for efficient solar cells:Solar Energy Materials and Solar Cells, 2024, 272, 112889
- [13] Yanqing Wang*, Zhaozhao Wang, Min Fan, Mengzhu Li, Liangliang Xie, Haifei Zhu, Yu Wang, Wangchao Chen, Fuling Guo, Chengwu Shi*. An In Situ Polymerization-Assisted Grain Growth Strategy for Efficient and Stable Sb2S3 Solar Cells:ACS Applied Energy Materials, 2024, 7(9), 4252-4259
