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BAMAPbI 同系层状钙钛矿的非单调光稳定性

Nonmonotonic Photostability of BAMAPbI Homologous Layered Perovskites.

作者信息

Udalova Natalia N, Fateev Sergey A, Nemygina Elizaveta M, Zanetta Andrea, Grancini Giulia, Goodilin Eugene A, Tarasov Alexey B

机构信息

Laboratory of New Materials for Solar Energetics, Department of Materials Science, Lomonosov Moscow State University, Lenin Hills, 119991 Moscow, Russia.

Department of Chemistry and INSTM, University of Pavia, Via Taramelli 16, 27100 Pavia, Italy.

出版信息

ACS Appl Mater Interfaces. 2022 Jan 12;14(1):961-970. doi: 10.1021/acsami.1c20043. Epub 2021 Dec 27.

Abstract

Layered lead halide perovskites (2D LHPs) are attracting considerable attention as a promising material for a new generation of solar cell devices. LHPs have been presented as a more stable alternative to the more widespread 3D bulk perovskite materials; however, a critical analysis of their photostability is still lacking. In this work, we perform a comparative study between BAMAPbI (BA─butylammonium and MA─methylammonium) 2D LHPs with different dimensionalities ( = 1-3) and MAPbI 3D perovskites. We compare different stability testing protocols including photometrical determination of iodine-containing products in nonpolar solvents, X-ray diffraction, and photoluminescence (PL) spectroscopy. The resulting trends of the photostability in an inert atmosphere based on PL spectroscopy measurements demonstrate a nonmonotonic dependence of the degradation rate on the perovskite layer thickness with a "stability island" at ≥ 3, which is caused by a combination of antibate factors of electronic structures and chemical compositions in the family of 2D perovskites. We also identify a critical oxygen concentration in the surrounding environment that affects the mechanism and strongly enhances the rate of layered perovskite photodegradation.

摘要

层状卤化铅钙钛矿(2D LHPs)作为新一代太阳能电池器件的一种有前途的材料,正吸引着相当多的关注。与更广泛使用的3D块状钙钛矿材料相比,LHP已被视为一种更稳定的替代品;然而,对其光稳定性的关键分析仍然缺乏。在这项工作中,我们对具有不同维度(n = 1-3)的BAMAPbI(BA─丁基铵和MA─甲基铵)2D LHP与MAPbI 3D钙钛矿进行了比较研究。我们比较了不同的稳定性测试方案,包括在非极性溶剂中对含碘产物的光度测定、X射线衍射和光致发光(PL)光谱。基于PL光谱测量,在惰性气氛中得到的光稳定性趋势表明,降解速率对钙钛矿层厚度呈现非单调依赖性,在n≥3时存在一个“稳定岛”,这是由2D钙钛矿家族中电子结构和化学成分的反位因素共同作用引起的。我们还确定了周围环境中影响该机制并强烈提高层状钙钛矿光降解速率的临界氧浓度。

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