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石墨取向和离子传输对双电层电容器性能影响的研究。

Study of the Impact of Graphite Orientation and Ion Transport on EDLC Performance.

作者信息

de St Aurin Joseph M Gallet, Phillips Jonathan

机构信息

US Navy, Naval Postgraduate School, GSEAS, Monterey, CA 93943, USA.

Capacitor Foundry, Sand City, CA 93955, USA.

出版信息

Materials (Basel). 2021 Dec 26;15(1):155. doi: 10.3390/ma15010155.

Abstract

A model study of electric double layer capacitor (EDLC)-style capacitors in which the electrodes were composed of low surface area-oriented flakes of graphite that compressed to form a paper-like morphology has suggested that ion transport rates significantly impact EDLC energy and power density. Twelve capacitors were constructed, each using the same model electrode material and the same aqueous NaCl electrolyte, but differing in relative electrode orientation, degree of electrode compression, and presence/absence of an ionic transport salt bridge. All were tested with a galvanostat over a range of discharge currents. Significant differences in energy and power density and estimated series resistance were found as a function of all the factors listed, indicating that capacitor performance is not simply a function of the electrode surface area. This simple postulation was advanced and tested against data: net ion (Na, Cl) 'velocity' during both charge and discharge significantly impacts capacitive performance.

摘要

对双电层电容器(EDLC)式电容器的一项模型研究表明,离子传输速率会显著影响EDLC的能量和功率密度。在该研究中,电极由低表面积取向的石墨薄片组成,这些薄片压缩后形成纸状形态。研究人员构建了12个电容器,每个电容器都使用相同的模型电极材料和相同的NaCl水溶液电解质,但在相对电极取向、电极压缩程度以及是否存在离子传输盐桥方面存在差异。所有电容器都在一系列放电电流下用恒电流计进行了测试。研究发现,能量和功率密度以及估计的串联电阻存在显著差异,这是所有列出因素的函数,表明电容器性能不仅仅是电极表面积的函数。本文提出了这一简单假设,并根据数据进行了验证:充电和放电过程中的净离子(Na、Cl)“速度”会显著影响电容性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6c6/8746061/69b2620c82da/materials-15-00155-g001.jpg

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