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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >In operando x-ray tomography for next-generation batteries: a systematic approach to monitor reaction product distribution and transport processes
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In operando x-ray tomography for next-generation batteries: a systematic approach to monitor reaction product distribution and transport processes

机译:下一代电池的X射线断层摄影术:监测反应产物分布和运输过程的系统方法

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摘要

Computed tomography with x-rays is a powerful tool to analyze the complex reaction and transport processes that occur inside electrochemical storage devices. To this day, a better insight into the occurring processes is needed and will yield improvements in energy density and cycling stability of next-generation batteries. Herein we present general considerations for the use of x-ray tomography of batteries to gain a detailed insight during operation. Furthermore, we present examples for the tomography of zinc-oxygen batteries, sodium-oxygen batteries and metal-sulfur batteries, elucidating performance limiting degradation processes such as dendrite formation and loss of liquid electrolyte. With the method applied, we aim to establish an effective link between the battery and x-ray community by offering a guideline on how to apply x-ray tomography to propel research on battery materials and entire batteries.
机译:X射线计算机断层扫描是分析电化学存储设备内部发生的复杂反应和传输过程的强大工具。迄今为止,需要对正在发生的过程有更好的了解,并将改善下一代电池的能量密度和循环稳定性。在此,我们介绍使用电池X射线断层摄影术以获得操作过程中的详细信息的一般注意事项。此外,我们提供了锌氧电池,钠氧电池和金属硫电池的层析成像示例,阐明了性能限制了降解过程(例如枝晶形成和液体电解质损失)的性能。通过应用该方法,我们旨在通过提供有关如何应用X射线断层扫描技术来推动电池材料和整个电池研究的指南,在电池和X射线社区之间建立有效的联系。

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