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The Effect of Mechanical State on the Equilibrium Potential of Alkali Metal/Ceramic Single-Ion Conductor Systems

机译:机械状态对碱金属/陶瓷单离子导体系统平衡电位的影响

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摘要

The relationship between mechanical stress states and interfacial electrochemical thermodynamics of Li metal/Li6.5La3Zr1.5Ta0.5O12 and Na metal/Na-beta"-Al2O3 systems are examined in two experimental configurations with an applied uniaxial load; the solid electrolytes are pellets and the metal electrodes high-aspect-ratio electrodes. The experimental results demonstrate that 1) the change in equilibrium potential at the metal/electrolyte interface, when stress is applied to the metal electrode, is linearly proportional to the molar volume of the metal electrode, and 2) the mechanical stress in the electrolyte has a negligible effect on the equilibrium potential for an experimental setup in which the electrolyte is stressed and the electrode is left unstressed. Solid mechanics modeling of a metal electrode on a solid electrolyte pellet indicates that pressure and normal stress are within approximate to 0.5 MPa of each other for the high aspect ratio (approximate to 1:100 thickness:diameter in our study) Li metal electrodes under loads that exceed yield conditions. This work should aid in advancing the quantitative understanding of alkali metal dendrite formation within incipient cracks and their subsequent growth, and pore formation upon stripping, both situations where properly accounting for the impact of mechanical state on the equilibrium potential is of critical importance for calculating the current distribution.
机译:用施加的单轴载荷的两种实验配置检查了Li Mater / Li6.5LA3ZR1.5TA0.5012和Na Metal / Na-Beta“-al2O3系统的机械应力状态与界面电化学热力学的关系;固体电解质是颗粒和金属电极高纵横比电极。实验结果表明,1)当应力施加到金属电极时,金属/电解质界面处的平衡电位变化与金属电极的摩尔体积线性成比例, 2)电解质中的机械应力对施加电解质的实验设置的平衡电位具有可忽略不计的效果,并且电极保持不受限制。固体电解质颗粒上的金属电极的固体力学建模表示压力和压力对于高纵横比(近似为1:100厚度:Diame,正常应力在彼此的近似达到0.5MPa。在我们的研究中,李金属电极在负载下超过产量条件。这项工作应该有助于提高初生裂缝中碱金属枝晶形成的定量理解及其随后的生长,以及剥离时的孔隙形成,其中适当地对机械状态对平衡潜力的影响进行了适当核实的情况对计算来说是至关重要的电流分布。

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