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首页> 外文期刊>Journal of physical chemistry letters >Real-Time Monitoring of Cation Dissolution/Deintercalation Kinetics from Transition-Metal Oxides in Organic Environments
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Real-Time Monitoring of Cation Dissolution/Deintercalation Kinetics from Transition-Metal Oxides in Organic Environments

机译:有机环境中过渡 - 金属氧化物中阳离子溶出度/脱嵌动力学的实时监测

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摘要

The future of high-voltage rechargeable batteries is closely tied to the fundamental understanding of the processes that lead to the potential-dependent degradation of electrode materials and organic electrolytes. To date, however, there have been no methods able to provide quantitative, in situ and in real time?information about the electrode dissolution kinetics and concomitant electrolyte decomposition during charge/discharge. We describe the development of such a method, which is of both fundamental and technological significance. Our novel approach enables simultaneous and independent measurements of transition-metal cation dissolution rates from different oxide hosts (Co~(3+/4+) or Cr~(3+/4+)), deintercalation kinetics of working cations (Mg~(2+)), and the relative rate of electrolyte decomposition.
机译:高压可充电电池的未来与对导致电极材料和有机电解质的潜在依赖性降解的过程的基本理解密切相关。 然而,迄今为止,没有能够提供定量,原位和实时提供定量的方法?关于电极溶解动力学和充电/放电期间的伴随电解质分解的信息。 我们描述了这种方法的发展,这是基本和技术意义。 我们的新方法使来自不同氧化物宿主的过渡金属阳离子溶解速率的同时和独立测量(CO〜(3 + / 4 +)或Cr〜(3 + / 4 +)),工作阳离子的脱嵌动力学(Mg〜( 2+))和电解质分解的相对速率。

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