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In-Operando Detection of the Physical Property Changes of an Interfacial Electrolyte during the Li-Metal Electrode Reaction by Atomic Force Microscopy

机译:通过原子力显微镜检查界面电极反应期间界面电解质的物理性能的in-Ormando检测

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摘要

The physical properties of an interfacial electrolyte near the electrode surface essentially affect the electrochemical behavior of the Li metal negative electrode. Therefore, probing the interfacial electrolyte under in-operando conditions is highly desired to determine the true electrochemical interface and electrode performance. In this study, dissipation recording by force-distance analysis based on atomic force microscopy was applied for the first time to address these challenges and a notable performance was observed during this study. The energy dissipation of the cantilever during the force curve motion is an important indicator to evaluate the conditions of the interfacial electrolyte because the solution drag is based on the physical properties of the electrolyte. In the in-operando electrochemical experiments of the Li metal electrode with a tetraglyme-based electrolyte, the dissipation energy clearly changed corresponding to the charge-discharge reaction. Recording the dissipation based on the force-distance analysis coupled with electrochemical operation improved the understanding of the actual characteristics of the electrochemical interface based on the direct measurement of the physical properties.
机译:电极表面附近的界面电解质的物理性质基本上影响Li金属负极的电化学行为。因此,非常希望探测在-OmporAdo条件下的界面电解质,以确定真正的电化学界面和电极性能。在该研究中,首次应用基于原子力显微镜的力 - 距离分析的耗散记录,以解决这些挑战,并且在本研究期间观察到显着的性能。在力曲线运动期间悬臂的能量耗散是评估界面电解质的条件的重要指标,因为溶液牵引基于电解质的物理性质。在具有四平均电解质的Li金属电极的Outando电化学实验中,对应于电荷 - 放电反应的耗散能量明显变化。基于电化学操作耦合的力距离分析记录耗散改善了基于直接测量物理性质的电化学界面的实际特性的理解。

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