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The self-discharging of supercapacitors interpreted in terms of a distribution of rate constants

机译:在速率常数分布方面解释了超级电容器的自放电

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摘要

Supercapacitors are prone to self-discharging, which is most often measured as a voltage decrease with time under open circuit conditions. It is of substantial interest to find simple and general methods to extract information about the processes going on in the supercapacitor during self-discharge. The current work fits a stretched exponential function to experimental data available in the literature, thus extracting parameters that allows one to probe the internal processes of the supercapacitor. In particular, experimental data related to charge holding time, charging rate before self-discharge and temperature dependence are investigated. It is demonstrated how the fitting data can be understood in terms of a kinetic model exhibiting a distribution of rate constants which are related to the fitting parameters. The current work therefore proposes a method that allows one to quickly map the internal processes of a self-discharging supercapacitors with only two variables, and might therefore become a useful tool.
机译:超级电容器容易发生自放电,这通常是在开路条件下随着时间的推移测量的。找到简单和一般的方法,提取有关在自放电期间超级电容器的进程的信息的简单和一般方法具有重要兴趣。目前的工作适用于文献中可用的实验数据的拉伸指数函数,从而提取允许一个人探测超级电容器的内部过程的参数。特别地,研究了与电荷保持时间相关的实验数据,在自放电和温度依赖之前的充电率。证明了如何就表现出与拟合参数有关的速率常数分布的动力学模型来理解拟合数据。因此,目前的作品提出了一种方法,该方法允许其中仅使用两个变量快速映射自放电超级电容器的内部过程,因此可能成为一个有用的工具。

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