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Layered Double Perovskites
Annual Review of Materials Research ( IF 9.7 ) Pub Date : 2021-07-26 , DOI: 10.1146/annurev-matsci-092320-102133
Hayden A. Evans 1 , Lingling Mao 2 , Ram Seshadri 2, 3, 4 , Anthony K. Cheetham 2, 4, 5
Affiliation  

Successful strategies for the design of crystalline materials with useful function are frequently based on the systematic tuning of chemical composition within a given structural family. Perovskites with the formula ABX3, perhaps the best-known example of such a family, have a vast range of elements on A, B, and X sites, which are associated with a similarly vast range of functionality. Layered double perovskites (LDPs), a subset of this family, are obtained by suitable slicing and restacking of the perovskite structure, with the additional design feature of ordered cations and/or anions. In addition to inorganic LDPs, we also discuss hybrid (organic-inorganic) LDPs here, where the A-site cation is a protonated organic amine. Several examples of inorganic LDPs are presented with a discussion of their ferroic, magnetic, and optical properties. The emerging area of hybrid LDPs is particularly rich and is leading to exciting discoveries of new compounds with unique structures and fascinating optoelectronic properties. We provide context for what is important to consider when designing new materials and conclude with a discussion of future opportunities in the broad LDP area.

中文翻译:


层状双钙钛矿

设计具有有用功能的结晶材料的成功策略通常基于对给定结构族内化学成分的系统调整。具有公式ABX 3 的钙钛矿,也许是此类家族中最著名的例子,在ABX位点上具有广泛的元素,这些元素与类似的广泛功能相关。层状双钙钛矿 (LDPs) 是该家族的一个子集,通过对钙钛矿结构进行适当的切片和重新堆叠获得,并具有有序阳离子和/或阴离子的额外设计特征。除了无机 LDPs,我们还讨论了混合(有机-无机)LDPs,其中A-位阳离子是质子化的有机胺。介绍了无机 LDPs 的几个例子,并讨论了它们的铁性、磁性和光学特性。混合 LDP 的新兴领域特别丰富,并且正在导致令人兴奋的发现具有独特结构和迷人光电特性的新化合物。我们提供了设计新材料时需要考虑的重要因素的背景,并以对广泛的 LDP 领域未来机会的讨论结束。

更新日期:2021-07-27
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