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层状混合卤化物钙钛矿中的结构无序:堆垛层错类型、对光学性质的影响及其通过结晶工程的抑制

Structural Disorder in Layered Hybrid Halide Perovskites: Types of Stacking Faults, Influence on Optical Properties and Their Suppression by Crystallization Engineering.

作者信息

Tutantsev Andrei S, Marchenko Ekaterina I, Udalova Natalia N, Fateev Sergey A, Goodilin Eugene A, Tarasov Alexey B

机构信息

Laboratory of New Materials for Solar Energetics, Faculty of Materials Science, Lomonosov Moscow State University, 1 Lenin Hills, 119991 Moscow, Russia.

Department of Geology, Lomonosov Moscow State University, 1 Lenin Hills, 119991 Moscow, Russia.

出版信息

Nanomaterials (Basel). 2021 Dec 8;11(12):3333. doi: 10.3390/nano11123333.

Abstract

Layered hybrid halide perovskites (LHHPs) are an emerging type of semiconductor with a set of unique optoelectronic properties. However, the solution processing of high-quality LHHPs films with desired optical properties and phase composition is a challenging task, possibly due to the structural disorder in the LHHP phase. Nevertheless, there is still a lack of experimental evidence and understanding of the nature of the structural disorder in LHHPs and its influence on the optical properties of the material. In the current work, using 2D perovskites (CHNH)(CHNH)PbI (further BAMAPbI) with n = 1-4 as a model system, we demonstrate that deviations in LHHPs optical properties and X-ray diffraction occur due to the presence of continuous defects-Stacking Faults (SFs). Upon analyzing the experimental data and modeled XRD patterns of a possible set of stacking faults (SFs) in the BAMAPbI phase, we uncover the most plausible type of SFs, featured by the thickness variation within one perovskite slab. We also demonstrate the successful suppression of SFs formation by simple addition of BAI excess into BAMAPbI solutions.

摘要

层状混合卤化物钙钛矿(LHHPs)是一种新兴的半导体类型,具有一系列独特的光电特性。然而,制备具有所需光学性质和相组成的高质量LHHPs薄膜的溶液处理是一项具有挑战性的任务,这可能是由于LHHPs相中存在结构无序。尽管如此,仍然缺乏关于LHHPs中结构无序的性质及其对材料光学性质影响的实验证据和理解。在当前的工作中,我们使用n = 1-4的二维钙钛矿(CHNH)(CHNH)PbI(进一步称为BAMAPbI)作为模型系统,证明了由于连续缺陷——堆垛层错(SFs)的存在,LHHPs的光学性质和X射线衍射会出现偏差。通过分析BAMAPbI相中一组可能的堆垛层错(SFs)的实验数据和模拟XRD图谱,我们发现了最合理的SFs类型,其特征是在一个钙钛矿平板内厚度变化。我们还证明了通过向BAMAPbI溶液中简单添加过量的BAI可以成功抑制SFs的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4355/8703331/776b0c8b5421/nanomaterials-11-03333-g001.jpg

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