Bandgap and photoluminescence tunability of lead‐free Cs3Bi2(Br,I)9 solid solution compounds

Haruto Hashimoto, Ryohei Oka, Tomokatsu Hayakawa, Christoph Brabec
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Abstract

In this study, lead‐free, mixed‐halide perovskites of cesium bismuth bromide/iodide are synthesized by a hydrothermal method, and their structures and optical properties of the solid solution compounds are examined. The synthesized compounds exhibit X‐ray diffraction (XRD) patterns similar to that of trigonal Cs3Bi2Br9 (CBB), whose reflections are shifted to lower angles depending on the experimental iodine content. Very interestingly, even with the excessive introduction of iodine content in nominal, the symmetry of the crystals is kept to be trigonal, indicating that bromide CBB and iodide Cs3Bi2I9 (CBI) are crystallographically mixed in a facile way, although the stable crystal form of CBI is hexagonal. The optical properties of bandgap energy E g and photoluminescence (PL) for the synthesized crystals are also examined. It is found that E g decreases and PL peak position is correspondingly shifted to a longer wavelength with an increase in the experimental iodine content due to their band‐to‐band transitions. Moreover, first‐principles calculation suggests the reduction of E g with iodine content and the varied nature of band structure from direct (trigonal CBB) to indirect (trigonal CBI) transition. These novel findings could make the proposed strategy successful for developing lead‐free, mixed‐halide Bi‐based perovskite crystals with the tunability of their optical properties.This article is protected by copyright. All rights reserved.
无铅Cs3Bi2(Br,I)9固溶体化合物的带隙和光致发光可调性
本文采用水热法制备了无铅、混合卤化物的溴化铋/碘化铯钙钛矿,并对其固溶体的结构和光学性质进行了研究。合成的化合物的X射线衍射(XRD)模式类似于三角形的Cs3Bi2Br9 (CBB),其反射角随实验碘含量的变化而变化。非常有趣的是,即使在名义上过量引入碘含量,晶体的对称性仍然保持三角形,这表明溴化CBB和碘化Cs3Bi2I9 (CBI)在晶体学上很容易混合,尽管CBI的稳定晶体形式是六边形的。对合成晶体的带隙能Eg和光致发光(PL)的光学性质也进行了测试。结果发现,随着实验碘含量的增加,由于其波段到波段的跃迁,Eg降低,PL峰位置相应向更长的波长移动。此外,第一性原理计算表明,Eg随着碘含量的增加而减少,并且带结构的性质从直接(三角CBB)转变为间接(三角CBI)。这些新发现可以使所提出的策略成功地用于开发具有光学性质可调性的无铅混合卤化物Bi基钙钛矿晶体。这篇文章受版权保护。版权所有。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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