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波函数局域化降低了无序双钙钛矿CsAgBiBr的带隙。

Wave Function Localization Reduces the Bandgap of Disordered Double Perovskite CsAgBiBr.

作者信息

Liu Dongyu, Abzakh Bayan Amer, Kazakova Elena A, Abrameshin Dmitrii A, Troshin Pavel A, Long Run, Vasenko Andrey S

机构信息

HSE University, 101000 Moscow, Russia.

Department of Biochemistry, Sechenov First Moscow State Medical University, 119991 Moscow, Russia.

出版信息

J Phys Chem Lett. 2024 Nov 14;15(45):11268-11274. doi: 10.1021/acs.jpclett.4c02946. Epub 2024 Nov 4.

Abstract

Double perovskite CsAgBiBr is a promising alternative to lead-based perovskites with excellent stability and attractive optoelectronic properties. However, a relatively large bandgap severely limits its performance in many applications such as solar cells and photodetectors. It has been reported that a random distribution of Ag and Bi atoms in CsAgBiBr effectively reduces its bandgap without introducing dopants or impurities, while the mechanism remains unclear. Here, using density functional theory calculations, we demonstrate that the Ag-Bi disorder in CsAgBiBr generates localized electronic states as band edges to regulate the bandgap. The disordered structures segregate Ag and Bi atoms in the lattice, and the formed homoatomic clusters lead to wave function localization. Moreover, the bandgap decrease exhibits a non-monotonic dependence on the degree of disorder. Our results are comparable with experimental observations and provide crucial insights into understanding the order-disorder transition in double perovskites.

摘要

双钙钛矿CsAgBiBr是一种很有前景的替代铅基钙钛矿的材料,具有出色的稳定性和吸引人的光电特性。然而,相对较大的带隙严重限制了其在太阳能电池和光电探测器等许多应用中的性能。据报道,CsAgBiBr中Ag和Bi原子的随机分布有效地降低了其带隙,而无需引入掺杂剂或杂质,但其机制仍不清楚。在此,我们利用密度泛函理论计算表明,CsAgBiBr中的Ag-Bi无序产生了作为带边的局域电子态来调节带隙。无序结构在晶格中分离出Ag和Bi原子,形成的同原子团簇导致波函数局域化。此外,带隙减小对无序程度呈现非单调依赖性。我们的结果与实验观察结果相当,并为理解双钙钛矿中的有序-无序转变提供了关键见解。

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