Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, 266101, China.
State Key Laboratory for Powder Metallurgy, Central South University, Changsha, 410083, China.
Small Methods. 2021 Sep;5(9):e2100557. doi: 10.1002/smtd.202100557. Epub 2021 Aug 3.
Understanding the complicated interplay of the continuously evolving electrode materials in their inherent 3D states during the battery operating condition is of great importance for advancing rechargeable battery research. In this regard, the synchrotron X-ray tomography technique, which enables non-destructive, multi-scale, and 3D imaging of a variety of electrode components before/during/after battery operation, becomes an essential tool to deepen this understanding. The past few years have witnessed an increasingly growing interest in applying this technique in battery research. Hence, it is time to not only summarize the already obtained battery-related knowledge by using this technique, but also to present a fundamental elucidation of this technique to boost future studies in battery research. To this end, this review firstly introduces the fundamental principles and experimental setups of the synchrotron X-ray tomography technique. After that, a user guide to its application in battery research and examples of its applications in research of various types of batteries are presented. The current review ends with a discussion of the future opportunities of this technique for next-generation rechargeable batteries research. It is expected that this review can enhance the reader's understanding of the synchrotron X-ray tomography technique and stimulate new ideas and opportunities in battery research.
了解可充电电池研究中,电池工作状态下,不断演变的电极材料在其固有 3D 状态下的复杂相互作用非常重要。在这方面,同步加速器 X 射线断层扫描技术成为一种必不可少的工具,它可以在电池运行前后/期间/之后对各种电极组件进行非破坏性、多尺度和 3D 成像。过去几年,人们对这项技术在电池研究中的应用越来越感兴趣。因此,现在不仅要总结使用这项技术已经获得的电池相关知识,还要对这项技术进行基本阐述,以推动未来的电池研究。为此,本文首先介绍了同步加速器 X 射线断层扫描技术的基本原理和实验装置。之后,介绍了其在电池研究中的应用指南,并展示了其在各种电池研究中的应用实例。本文最后讨论了这项技术在下一代可充电电池研究中的未来机遇。希望本文能增进读者对同步加速器 X 射线断层扫描技术的理解,并为电池研究带来新的思路和机遇。