人工晶体学报2026,Vol.55Issue(5):753-762,10.DOI:10.16553/j.cnki.issn1000-985x.2025.0245
有机磷酸酯修饰FA0.8MA0.15Cs0.05Pb(I0.76Br0.24)3钙钛矿太阳能电池及其性能研究
Organic Phosphonate-Modified FA0.8MA0.15Cs0.05Pb(I0.76Br0.24)3 Perovskite Solar Cells and Their Performance
摘要
Abstract
The development of wide-bandgap perovskite solar cells is limited by the high defect density and severe non-radiative recombination within their films.This study proposes the use of 4-methoxyphenyldiethylphosphonate(DM)as a multifunctional additive to mitigate these problems.The P=O group in the DM molecule can form stable coordination bonds with under-coordinated Pb2+,effectively passivating defects.Simultaneously,its methoxy group regulates the local charge distribution through an electron-donating effect,thereby synergistically optimizing the crystallization process.Furthermore,the π-π stacking interactions between the benzene rings of DM molecules enhance the film's hydrophobicity,thereby improving environmental stability.The DM-modified wide-bandgap perovskite solar cell achieve a power conversion efficiency(PCE)of 22.08%.In contrast,the PCE of the control device without DM is only 18.89%.Furthermore,DM modification increase the open-circuit voltage(Voc)from 1.082 V to 1.127 V,the short-circuit current density(Jsc)from 22.33 mA·cm2 to 23.78 mA·cm2,and the fill factor(FF)from 78.17%to 82.39%.The unencapsulated DM-modified device retained 91.2%of its initial efficiency after 30 d of storage at 25℃ and 10%~40%relative humidity,significantly outperforming the control device(85.3%).These results strongly demonstrate the significant potential of DM as a functional additive for fabricating high-quality perovskite films and realizing high-performance devices,laying both experimental and theoretical foundations for its subsequent practical application.关键词
宽带隙钙钛矿电池/缺陷钝化/非辐射复合/添加剂工程/结晶调控/稳定性Key words
wide-bandgap perovskite solar cell/defect passivation/non-radiative recombination/additive engineering/crystallization modulation/stability分类
信息技术与安全科学引用本文复制引用
加雪峰,叶林峰,阮妙,史晨宇,王智超,倪玉凤,郭永刚,高鹏..有机磷酸酯修饰FA0.8MA0.15Cs0.05Pb(I0.76Br0.24)3钙钛矿太阳能电池及其性能研究[J].人工晶体学报,2026,55(5):753-762,10.基金项目
钙钛矿电池研发平台建设项目(KY-C-2024-GF06) (KY-C-2024-GF06)