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Efficient and Stable p–i–n Perovskite Solar Cells Enabled by In Situ Functional Group Conversion

作者:Minchao Liu, Jinyuan Zhang, Shucheng Qin, Xiaodan Miao, Meng Yuan, Zhe Liu, Yiyang Wang, Yishun Feng, Xin Jiang, Ruihan Wu, Yuanping Yi, Lei Meng, Yongfang Li · 发表于:Journal of the American Chemical Society · 年份:2024 · DOI:10.1021/jacs.4c13248 · 被引用次数:46 · 研究领域:Perovskite Materials and Applications、Conducting polymers and applications、Organic Electronics and Photovoltaics

Chemical additives play a critical role in the crystallization kinetics and film morphology of perovskite solar cells (pero-SCs), thus affecting the device performance and stability. Especially, carboxylic acids and their congeners with a −COOH group can effectively serve as ligands to fortify the structural integrity and mitigate the risk of lead efflux. However, direct addition of −COOH into the precursor solution could retard the crystallization kinetics of the perovskite during film formation due to the strong coordination. Here, we present a novel approach of in situ functional group conversion using Bis(2,5-dioxopyrrolidin-1-yl) 4,7,10,13-tetraoxahexadecanedioate (Bis-PEG4-NHS ester) as an additive in the antisolvent, which underwent a functional group transformation from −COOR to −COOH during the annealing process through a hydrolysis reaction of Bis-PEG4-NHS ester. The corresponding hydrolysates exhibit enhanced interactions with PbI 2 and FAI, contributing to the structural integrity and the defect passivation. Our findings offer valuable insights into the chemical interactions within the crystal growth process, achieving the p–i–n pero-SC device with an efficiency of 25.79% (certified as 25.47%) and notable long-term stability.