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源自钙钛矿的主族卤化物半导体:区分化学、结构和电子方面。

Main-Group Halide Semiconductors Derived from Perovskite: Distinguishing Chemical, Structural, and Electronic Aspects.

作者信息

Fabini Douglas H, Labram John G, Lehner Anna J, Bechtel Jonathon S, Evans Hayden A, Van der Ven Anton, Wudl Fred, Chabinyc Michael L, Seshadri Ram

机构信息

Institute for Applied Materials, Karlsruhe Institute of Technology , 76131 Karlsruhe, Germany.

Fraunhofer-Institut für Werkstoffmechanik , 79108 Freiburg, Germany.

出版信息

Inorg Chem. 2017 Jan 3;56(1):11-25. doi: 10.1021/acs.inorgchem.6b01539. Epub 2016 Sep 15.

Abstract

Main-group halide perovskites have generated much excitement of late because of their remarkable optoelectronic properties, ease of preparation, and abundant constituent elements, but these curious and promising materials differ in important respects from traditional semiconductors. The distinguishing chemical, structural, and electronic features of these materials present the key to understanding the origins of the optoelectronic performance of the well-studied hybrid organic-inorganic lead halides and provide a starting point for the design and preparation of new functional materials. Here we review and discuss these distinguishing features, among them a defect-tolerant electronic structure, proximal lattice instabilities, labile defect migration, and, in the case of hybrid perovskites, disordered molecular cations. Additionally, we discuss the preparation and characterization of some alternatives to the lead halide perovskites, including lead-free bismuth halides and hybrid materials with optically and electronically active organic constituents.

摘要

近年来,主族卤化物钙钛矿因其卓越的光电性能、易于制备以及丰富的组成元素而备受关注,但这些奇特且有前景的材料在重要方面与传统半导体有所不同。这些材料独特的化学、结构和电子特性是理解经过充分研究的有机-无机混合铅卤化物光电性能起源的关键,并为新型功能材料的设计和制备提供了一个起点。在此,我们回顾并讨论这些独特特性,其中包括容错电子结构、近邻晶格不稳定性、不稳定的缺陷迁移,以及对于混合钙钛矿而言,无序的分子阳离子。此外,我们还讨论了一些卤化铅钙钛矿替代品的制备和表征,包括无铅卤化铋以及含有光学和电子活性有机成分的混合材料。

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