卤化物
钙钛矿(结构)
离子
离子键合
钝化
热稳定性
溴
材料科学
无机化学
化学
光伏系统
光伏
化学工程
结晶学
纳米技术
有机化学
冶金
工程类
生态学
图层(电子)
生物
作者
Raphael F. Moral,Carlo A. R. Perini,Tim Kodalle,Ahyoung Kim,Finn Babbe,N. Harada,Javid Hajhemati,Philip Schulz,Naomi S. Ginsberg,Shaul Aloni,Craig P. Schwartz,Juan‐Pablo Correa‐Baena,Carolin M. Sutter‐Fella
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2024-05-14
卷期号:9 (6): 2703-2716
被引量:3
标识
DOI:10.1021/acsenergylett.4c00728
摘要
This study explores the ionic dynamics in 2D/3D perovskite solar cells, which are known for their improved efficiency and stability. The focus is on the impact of halide choice in 3D perovskites treated with phenethylammonium halide salts (PEAX, X = Br and I). Our findings reveal that light and heat drive ionic migration in these structures, with PEA+ species diffusing into the 3D film in PEABr-treated samples. Mixed-halide 3D perovskites show halide interdiffusion, with bromine migrating to the surface and iodine diffusing into the film. Cathodoluminescence microscopy reveals localized 2D phases on the 3D perovskite, which become more evenly distributed after thermal treatment. Both PEAX salts enhance the performance of photovoltaic devices. This improvement is attributed to the passivation capabilities of the salts themselves and their respective Ruddlesden−Popper (RP) phases. Annealed PEAI-treated devices show a better balance between efficiency and statistical distribution of photovoltaic parameters.
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