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立方相BaSnF₆中的动态孤对电子与氟离子无序

Dynamic Lone Pairs and Fluoride-Ion Disorder in Cubic-BaSnF.

作者信息

Mercadier Briséïs, Coles Samuel W, Duttine Mathieu, Legein Christophe, Body Monique, Borkiewicz Olaf J, Lebedev Oleg, Morgan Benjamin J, Masquelier Christian, Dambournet Damien

机构信息

Réseau sur le Stockage Electrochimique de l'Energie, RS2E, FR CNRS 3459, 80039 Amiens Cedex, France.

Sorbonne Université, CNRS, Physicochimie des Electrolytes et Nanosystèmes Interfaciaux, UMR CNRS 8234, 75005 Paris, France.

出版信息

J Am Chem Soc. 2023 Nov 1;145(43):23739-23754. doi: 10.1021/jacs.3c08232. Epub 2023 Oct 16.

Abstract

Introducing compositional or structural disorder within crystalline solid electrolytes is a common strategy for increasing their ionic conductivity. (M,Sn)F fluorites have previously been proposed to exhibit two forms of disorder within their cationic host frameworks: occupational disorder from randomly distributed M and Sn cations and orientational disorder from Sn(II) stereoactive lone pairs. Here, we characterize the structure and fluoride-ion dynamics of cubic BaSnF, using a combination of experimental and computational techniques. Rietveld refinement of the X-ray diffraction (XRD) data confirms an average fluorite structure with {Ba,Sn} cation disorder, and the Sn Mössbauer spectrum demonstrates the presence of stereoactive Sn(II) lone pairs. X-ray total-scattering PDF analysis and molecular dynamics simulations reveal a complex local structure with a high degree of intrinsic fluoride-ion disorder, where 1/3 of fluoride ions occupy octahedral "interstitial" sites: this fluoride-ion disorder is a consequence of repulsion between Sn lone pairs and fluoride ions that destabilizes Sn-coordinated tetrahedral fluoride-ion sites. Variable-temperature F NMR experiments and analysis of our molecular dynamics simulations reveal highly inhomogeneous fluoride-ion dynamics, with fluoride ions in Sn-rich local environments significantly more mobile than those in Ba-rich environments. Our simulations also reveal dynamical reorientation of the Sn lone pairs that is biased by the local cation configuration and coupled to the local fluoride-ion dynamics. We end by discussing the effect of host-framework disorder on long-range diffusion pathways in cubic BaSnF.

摘要

在晶体固体电解质中引入成分或结构无序是提高其离子电导率的常用策略。此前有人提出,(M,Sn)F萤石在其阳离子主体框架内表现出两种无序形式:M和Sn阳离子随机分布导致的占位无序,以及Sn(II)立体活性孤对导致的取向无序。在此,我们结合实验和计算技术,对立方BaSnF的结构和氟离子动力学进行了表征。对X射线衍射(XRD)数据进行的Rietveld精修证实了具有{Ba,Sn}阳离子无序的平均萤石结构,并且Sn穆斯堡尔谱表明存在立体活性Sn(II)孤对。X射线全散射PDF分析和分子动力学模拟揭示了一种具有高度固有氟离子无序的复杂局部结构,其中1/3的氟离子占据八面体“间隙”位置:这种氟离子无序是Sn孤对与氟离子之间排斥作用的结果,该排斥作用使Sn配位的四面体氟离子位置不稳定。变温F NMR实验以及对我们分子动力学模拟的分析揭示了高度不均匀的氟离子动力学,富Sn局部环境中的氟离子比富Ba环境中的氟离子流动性明显更高。我们的模拟还揭示了Sn孤对的动态重取向,其受局部阳离子构型的影响,并与局部氟离子动力学相关联。最后,我们讨论了主体框架无序对立方BaSnF中长程扩散途径的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/498f/10623577/f2b9f2d97950/ja3c08232_0001.jpg

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