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快速可调微波辅助法制备玻璃和玻璃陶瓷硫代磷酸盐“LiPS”锂离子导体。

Rapid and Tunable Assisted-Microwave Preparation of Glass and Glass-Ceramic Thiophosphate "LiPS" Li-Ion Conductors.

机构信息

BASF SE , 67056 Ludwigshafen , Germany.

出版信息

ACS Appl Mater Interfaces. 2019 Nov 13;11(45):42280-42287. doi: 10.1021/acsami.9b15688. Epub 2019 Nov 4.

Abstract

Glass and glass-ceramic samples of metastable lithium thiophosphates with compositions of 70LiS-30PS and LiPS were controllably prepared by using a rapid assisted-microwave procedure in under 30 min. The rapid preparation times and weak coupling of the evacuated silica ampules with microwave radiation ensure minimal reactivity of the reactants and the container. The microwave-prepared samples display comparable conductivity values with more conventionally prepared (melt quenched) glass and glass-ceramic samples, on the order of 0.1 and 1 mS cm at room temperature, respectively. Rietveld analysis of synchrotron X-ray diffraction data acquired with an internal standard quantitatively yields phase amounts of the glassy and amorphous components, establishing the tunable nature of the microwave preparation. X-ray photoelectron spectroscopy and Raman spectroscopy confirm the composition and the appropriate ratios of isolated and corner-sharing tetrahedra in these semicrystalline systems. Solid-state Li nuclear magnetic resonance (NMR) spectroscopy resolves the seven crystallographic Li sites in the crystalline compound into three main environments. The diffusion behavior of these Li environments as obtained from pulsed-field gradient NMR methods can be separated into one slow and one fast component. The rapid and tunable approach to the preparation of high quality "LiPS" samples presented here coupled with detailed structural and compositional analysis opens the door to new and promising metastable solid electrolytes.

摘要

通过在 30 分钟内使用快速辅助微波程序,可控地制备了组成分别为 70LiS-30PS 和 LiPS 的亚稳锂硫代磷酸盐的玻璃和玻璃陶瓷样品。抽空的硅石安瓿与微波辐射的弱耦合以及快速的制备时间确保了反应物和容器的最小反应性。微波制备的样品在室温下分别具有与更传统制备的(熔融淬火)玻璃和玻璃陶瓷样品相当的电导率值,约为 0.1 和 1 mS cm。使用内标获得的同步加速器 X 射线衍射数据的 Rietveld 分析定量地给出了玻璃态和非晶态成分的相量,确定了微波制备的可调谐性质。X 射线光电子能谱和拉曼光谱证实了这些半晶态系统中孤立和顶角共享四面体的组成和适当比例。固态 Li 核磁共振(NMR)光谱将结晶化合物中的七个结晶学 Li 位分辨为三个主要环境。通过脉冲场梯度 NMR 方法获得的这些 Li 环境的扩散行为可以分为一个慢和一个快组分。这里提出的高质量“LiPS”样品的快速和可调制备方法以及详细的结构和组成分析为新的和有前途的亚稳固体电解质开辟了道路。

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