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使用中子散射技术对固态电池材料进行高级表征

Advanced Characterization of Solid-State Battery Materials Using Neutron Scattering Techniques.

作者信息

Novak Eric, Daemen Luke, Jalarvo Niina

机构信息

Department of Physics and Astronomy, Swarthmore College, 500 College Ave, Swarthmore, PA 19081, USA.

Neutron Sciences Directorate, Oak Ridge National Laboratory (ORNL), Oak Ridge, TN 37831, USA.

出版信息

Materials (Basel). 2024 Dec 19;17(24):6209. doi: 10.3390/ma17246209.

Abstract

Advanced batteries require advanced characterization techniques, and neutron scattering is one of the most powerful experimental methods available for studying next-generation battery materials. Neutron scattering offers a non-destructive method to probe the complex structural and chemical processes occurring in batteries during operation in truly in situ/in operando measurements with a high sensitivity to battery-relevant elements such as lithium. Neutrons have energies comparable to the energies of excitations in materials and wavelengths comparable to atomic distances in the solid state, thus giving access to study structural and dynamical properties of materials on an atomic scale. In this review, a broad overview of selected neutron scattering techniques is presented to illustrate how neutron scattering can be used to gain invaluable information of solid-state battery materials, with a focus on in situ/in operando methods. These techniques span multiple decades of length and time scales to uncover the complex processes taking place fundamentally on the atomic scale and to determine how these processes impact the macroscale properties and performance of functional battery systems. This review serves the solid-state battery research community by examining how the unique capabilities of neutron scattering can be applied to answer critical and unresolved questions of materials research in this field. A thorough and broad perspective is provided with numerous practical examples showing these techniques in action for battery research.

摘要

先进的电池需要先进的表征技术,而中子散射是研究下一代电池材料可用的最强大的实验方法之一。中子散射提供了一种非破坏性方法,可在真正的原位/工况下测量中探测电池在运行过程中发生的复杂结构和化学过程,对锂等与电池相关的元素具有高灵敏度。中子的能量与材料中的激发能量相当,波长与固态中的原子间距相当,因此能够在原子尺度上研究材料的结构和动力学性质。在这篇综述中,对选定的中子散射技术进行了广泛概述,以说明如何利用中子散射获取固态电池材料的宝贵信息,重点是原位/工况方法。这些技术跨越了多个数量级的长度和时间尺度,以揭示在原子尺度上从根本上发生的复杂过程,并确定这些过程如何影响功能性电池系统的宏观性质和性能。这篇综述通过研究如何应用中子散射的独特能力来回答该领域材料研究中关键且未解决的问题,为固态电池研究界提供了帮助。通过大量实际例子展示这些技术在电池研究中的应用,提供了全面而广泛的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3615/11677385/d3a49f8a70c1/materials-17-06209-g014.jpg

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