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吴生晗 2020级硕士     进组时间: 2020年    离组时间: 2023

教育经历:

B.S.(2016-2020) Southwest Petroleum University, China

M.S.(2020-2023) Henan University,  China

Ph.D.(2023- ) Sichuan University, China    (博士课题组链接:https://www.x-mol.com/groups/zhao_dewei  )

代表性论文和著作:

[1] Shenghan Wu, Liming Liu, Bo Zhang, Yueyue Gao*, Luwen Shang, Shenghua He, Shengjun Li*, Putao Zhang, Shanshan Chen*, and Yousheng Wang*. Multifunctional two-dimensional benzodifuran-based polymer for stable and eco-friendly perovskite solar cells. ACS Applied Materials & Interfaces2022.14 (36), 41389-41399 

[2] Shenghan Wu, Yiming Chen, Jianyao Tang, Xiaohui Li, Meiyue Liu, Zeng Chen, Putao Zhang*, Shengjun Li*. Passivating SnO2/perovskite interface via Guanide Hydrochloride toward Efficient and stable n-i-p perovskite solar.  

[3] Shenghan Wu, Jianyao Tang, Xiaohui Li, Meiyue Liu, Zeng Chen, Putao Zhang*, Shengjun Li*. Efficient and stable perovskite solar cells by introducing 5-Hydroxytryptamine for interfacial adjustment. 

[4] Yiming Chen, Shenghan Wu, Xiaohui Li, Meiyue Liu, Zeng Chen, Putao Zhang*, Shengjun Li*. Efficient and stable low-cost perovskite solar cells enabled by using surface passivated carbon as the counter electrode.Journal of Materials Chemistry C. 2022, 10, 1270–1275

[5] Xiaohui Li, Shenghan Wu, Yiming Chen, Jianyao Tang,Meiyue Liu, Zeng Chen, Putao Zhang*, Shengjun Li*. Grain boundary defect controlling of perovskite via N-hydroxysuccinimide-post-treatment process in efficient and stable n-i-p perovskite solar cells. Solar RRL. 2022,6, 2200502

[6] Putao Zhang, Shenghan Wu, Yiming Chen, Xiaohui Li, Fuhao Sun, Meiyue Liu, Zeng Chen and Shengjun Li*. Hysteresis-free and efficient perovskite solar cells using SnO2 with self-assembly L-Cysteine layer. Engineered Science. 2022, DOI: https://dx.doi.org/10.30919/es8d695

[7] Putao Zhang, Yiming Chen, Shenghan Wu, Xiaohui Li, Meiyue Liu, Shengjun Li*. Enhancing the performance of n-i-p perovskite solar cells by introducing hydroxyethylpiperazine ethane sulfonic acid for interfacial adjustment. Nanoscale. 2022, 14, 35–41