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电极质量平衡作为一种增加双电层电容器电容的廉价且简单的方法。

Electrode Mass Balancing as an Inexpensive and Simple Method to Increase the Capacitance of Electric Double-Layer Capacitors.

作者信息

Andres Britta, Engström Ann-Christine, Blomquist Nicklas, Forsberg Sven, Dahlström Christina, Olin Håkan

机构信息

Department of Natural Sciences, Mid Sweden University, Sundsvall, Sweden.

STT Emtec AB, Sundsvall, Sweden.

出版信息

PLoS One. 2016 Sep 22;11(9):e0163146. doi: 10.1371/journal.pone.0163146. eCollection 2016.

Abstract

Symmetric electric double-layer capacitors (EDLCs) have equal masses of the same active material in both electrodes. However, having equal electrode masses may prevent the EDLC to have the largest possible specific capacitance if the sizes of the hydrated anions and cations in the electrolyte differ because the electrodes and the electrolyte may not be completely utilized. Here we demonstrate how this issue can be resolved by mass balancing. If the electrode masses are adjusted according to the size of the ions, one can easily increase an EDLC's specific capacitance. To that end, we performed galvanostatic cycling to measure the capacitances of symmetric EDLCs with different electrode mass ratios using four aqueous electrolytes- Na2SO4, H2SO4, NaOH, and KOH (all with a concentration of 1 M)-and compared these to the theoretical optimal electrode mass ratio that we calculated using the sizes of the hydrated ions. Both the theoretical and experimental values revealed lower-than-1 optimal electrode ratios for all electrolytes except KOH. The largest increase in capacitance was obtained for EDLCs with NaOH as electrolyte. Specifically, we demonstrate an increase of the specific capacitance by 8.6% by adjusting the electrode mass ratio from 1 to 0.86. Our findings demonstrate that electrode mass balancing is a simple and inexpensive method to increase the capacitance of EDLCs. Furthermore, our results imply that one can reduce the amount of unused material in EDLCs and thus decrease their weight, volume and cost.

摘要

对称型双电层电容器(EDLCs)的两个电极中含有等量的相同活性材料。然而,如果电解质中水合阴离子和阳离子的大小不同,电极质量相等可能会阻碍EDLC获得最大可能的比电容,因为电极和电解质可能无法得到充分利用。在此,我们展示了如何通过质量平衡来解决这个问题。如果根据离子大小调整电极质量,就能轻松提高EDLC的比电容。为此,我们进行了恒电流循环,使用四种水性电解质——硫酸钠、硫酸、氢氧化钠和氢氧化钾(浓度均为1M)来测量具有不同电极质量比的对称型EDLCs的电容,并将这些结果与我们根据水合离子大小计算出的理论最佳电极质量比进行比较。理论值和实验值均表明,除氢氧化钾外,所有电解质的最佳电极比均低于1。以氢氧化钠为电解质的EDLCs电容增加幅度最大。具体而言,我们通过将电极质量比从1调整为0.86,使比电容提高了8.6%。我们的研究结果表明,电极质量平衡是一种简单且经济的提高EDLCs电容的方法。此外,我们的结果意味着,可以减少EDLCs中未使用材料的量,从而降低其重量、体积和成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eae3/5033588/fb9bfb6e45ce/pone.0163146.g001.jpg

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