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首页> 外文期刊>Physical chemistry chemical physics: PCCP >In operando monitoring of the state of charge and species distribution in zinc air batteries using X-ray tomography and model-based simulations
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In operando monitoring of the state of charge and species distribution in zinc air batteries using X-ray tomography and model-based simulations

机译:使用X射线断层扫描和基于模型的模拟对锌空气电池中的电荷状态和物质分布进行操作监控

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摘要

A novel combination of in operando X-ray tomography and model-based analysis of zinc air batteries is introduced. Using this approach the correlation between the three-dimensional morphological properties of the electrode - on the one hand - and the electrochemical properties of the battery - on the other hand is revealed. In detail, chemical dissolution of zinc particles and the electrode volume were investigated non-destructively during battery operation by X-ray tomography (applying a spatial resolution of 9 urn), while simulation yielded cell potentials of each electrode and allows for the prediction of long-term operation behavior. Furthermore, the analysis of individual zinc particles revealed an electrochemical dissolution process that can be explained using an adapted shrinking-core model.
机译:介绍了操作X射线断层扫描和基于模型的锌空气电池分析的新颖组合。使用这种方法,一方面揭示了电极的三维形态特性,另一方面显示了电池的电化学特性之间的相关性。详细地,通过X射线断层摄影术(应用9 urn的空间分辨率)对电池运行过程中锌颗粒的化学溶解和电极体积进行了无损研究,同时模拟产生了每个电极的电池电势并可以预测较长的长期操作行为。此外,对单个锌颗粒的分析显示了电化学溶解过程,可以使用适应的收缩核模型来解释。

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