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The Interfacial Nature of Mechano-Chemo-Electrical Potential and Its Application to Processing and Failure Prediction in Solid State Lithium Ion Batteries

机译:机械化学电势的界面性质及其在固态锂离子电池中加工和故障预测的应用

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The incorporation of mechanical stresses into descriptions of the electrochemical potential is of fundamental significance in understanding the processing and failure mechanisms in solid state lithium ion batteries. The chemical potential is defined by (i) the nature of the species, e.g. lithium atoms, or ions, and (ii) by the site or the phase where the species reside. The second point draws a distinction between the influence of mechanical tractions applied to a surface or an interface - e.g. grain boundaries - and the volumetric strain energy obtained from solutions to the usual boundary value problems in mechanics. This distinction is great, and not sufficiently recognized in the literature. In this presentation the interfacial mechano-chemo-electrical potential will be described and then applied to three problems in the processing and failure prediction of solid state lithium ion batteries made with Li-metal anodes.
机译:在理解固态锂离子电池的处理和失效机制方面,机械应力的结合到电化学潜力的描述中具有基本意义。 化学潜力由(i)物种的性质定义,例如, 锂原子或离子和(ii)由本地或物种所在的阶段。 第二点在施加到表面或界面的机械牵引的影响之间分化 - 例如, 谷物边界 - 以及机械常规边值问题中获得的体积应变能。 这种区别很大,在文献中没有充分认可。 在该介绍中,将描述界面机械化学电势,然后将其应用于用Li金属阳极制成的固态锂离子电池的加工和故障预测中的三个问题。

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