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首页> 外文期刊>APL Materials >Octahedral connectivity and its role in determining the phase stabilities and electronic structures of low-dimensional, perovskite-related iodoplumbates
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Octahedral connectivity and its role in determining the phase stabilities and electronic structures of low-dimensional, perovskite-related iodoplumbates

机译:八面体连通性及其在确定与钙钛矿相关的低维碘代铅酸盐的相稳定性和电子结构中的作用

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摘要

We describe a single crystal X-ray diffraction study and computational analysis of three guanidinium (Gua) based low-dimensional iodoplumbates with one edge-sharing and two corner-sharing octahedral connectivities, respectively. (Gua)3PbI5, which is reported for the first time, has a 1D corner-sharing octahedral chain structure. GuaPbI3 adopts a 1D edge-sharing octahedral chain structure in preference to structures that are either 3D and corner-sharing (i.e., perovskite) or 1D and face-sharing. (Gua)2PbI4 exhibits 2D corner-sharing octahedral connectivity in agreement with previous work. Density functional theory calculations are used to gain insight into the relative stabilities of the three polymorphs of GuaPbI3 and to assess how the connectivity and dimensionality of the octahedral framework influence the electronic structure of each of the hybrid perovskites studied.
机译:我们描述了一种分别具有一个边缘共享和两个角共享八面体连接性的三种基于胍基(Gua)的低维碘铅盐的单晶X射线衍射研究和计算分析。首次报道的(Gua)3PbI5具有一维角共享八面体链结构。 GuaPbI3采用1D边缘共享八面体链结构,而不是3D和角共享(即钙钛矿)或1D和面共享的结构。 (Gua)2PbI4与先前的工作一致,展现了2D角共享八面体连接。密度泛函理论计算用于深入了解GuaPbI3三种多晶型物的相对稳定性,并评估八面体框架的连通性和尺寸如何影响所研究的每种杂化钙钛矿的电子结构。

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