论文标题

电气双层电容器的三电极细胞量热仪

Three-Electrode Cell Calorimeter for Electrical Double Layer Capacitors

论文作者

Vos, Joren E., Rodenburg, Hendrik P., Maur, Danny Inder, Bakker, Ties J. W., Siekman, Henkjan, Erné, Ben H.

论文摘要

构建了量热仪,以测量以三电极配置连接的多孔电容性工作电极的热量。这使得可以检测阴极和阳极热产生之间的差异。电化学电池包含一个大的电解质溶液储存液,可确保通过Luggin管探测的盐溶液的恒定浓度。热通量传感器用于检测热量,其校准是由电极产生的热量的量表,是根据在完整充电分离循环中在工作电极上执行的净电气工作完成的。原则上,从测得的热量和电气工作中,可以根据应用电位的函数确定工作电极的内部能量的变化。此类测量值告诉孔内离子的势能和平均电力,从而深入了解电极微孔内部的双层。显示了水溶液中多孔碳电极的热量测量。

A calorimeter was built to measure the heat from a porous capacitive working electrode connected in a three-electrode configuration. This makes it possible to detect differences between cathodic and anodic heat production. The electrochemical cell contains a large electrolyte solution reservoir, ensuring a constant concentration of the salt solution probed by the reference electrode via a Luggin tube. A heat flux sensor is used to detect the heat, and its calibration as a gauge of the total amount of heat produced by the electrode is done on the basis of the net electrical work performed on the working electrode during a full charging-discharging cycle. In principle, from the measured heat and the electrical work, the change in internal energy of the working electrode can be determined as a function of applied potential. Such measurements inform about the potential energy and average electric potential of ions inside the pores, giving insight into the electrical double layer inside electrode micropores. Example measurements of the heat are shown for porous carbon electrodes in aqueous salt solution.

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