x射线成像技术在能源材料研究中的应用

Y. Gong, Zhenjiang Yu, Jiajun Wang
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引用次数: 0

摘要

随着人们对可持续能源需求的不断增加,先进的表征方法在能源材料研究领域变得越来越重要。借助x射线成像技术,我们可以从二维和三维的角度实时获取能源材料的形态、结构和应力变化信息。此外,借助高穿透x射线和高亮度同步辐射源,设计了原位实验,获取样品在充放电过程中的定性和定量变化信息。本文综述了基于同步加速器的x射线成像技术及其相关应用。讨论了x射线投影成像、透射x射线显微镜、扫描透射x射线显微镜、x射线荧光显微镜和相干衍射成像等主要x射线成像技术在能源材料领域的应用。展望了未来x射线成像的应用前景和发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of X-ray imaging technology in energy materials research
With the increasing demand for sustainable energy, advanced characterization methods are becoming more and more important in the field of energy materials research. With the help of X-ray imaging technology, we can obtain the morphology, structure and stress change information of energy materials in real time from two-dimensional and three-dimensional perspectives. In addition, with the help of high penetration X-ray and high brightness synchrotron radiation source, in-situ experiments are designed to obtain the qualitative and quantitative change information of samples during the charge and discharge process. In this paper, X-ray imaging technology based on synchrotron and its related applications are reviewed. The applications of several main X-ray imaging technologies in the field of energy materials, including X-ray projection imaging, transmission X-ray microscopy, scanning transmission X-ray microscopy, X-ray fluorescence microscopy and coherent diffraction imaging, are discussed. The application prospects and development directions of X-ray imaging in the future are prospected.
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