4.6 Article

Peculiar role of the electrolyte viscosity in the electrochemical capacitor performance

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JOURNAL OF MATERIALS CHEMISTRY A
卷 9, 期 13, 页码 8644-8654

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d0ta11230e

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This study finds that the influence of increased viscosity on the performance of symmetric carbon/carbon electrochemical capacitors is complex and depends significantly on the texture/structure properties of carbon electrodes. However, the application of viscous electrolytes can be beneficial in terms of reducing leakage current and internal gas evolution. Furthermore, it is possible to retain high power and energy performance even with a 104-fold increase in viscosity for devices with well-designed micro-/mesoporous interconnectivity in carbon materials.
This paper reports on the electrochemical performance of symmetric carbon/carbon electrochemical capacitors operating in an aqueous electrolyte (1 mol L-1 Li2SO4 solution) whose viscosity is modified by various amounts of carboxymethyl cellulose additive. The literature states that increased electrolyte viscosity usually decreases the overall capacitor performance. However, it has been found that the influence of this parameter is complex and depends significantly on the carbon electrode texture/structure properties. Fortunately, the application of viscous electrolytes is found to be beneficial in terms of reduced leakage current and internal gas evolution (by approximately 50%). Furthermore, the examination of differently structured carbons showed that in materials with well-designed micro-/mesoporous interconnectivity, it is possible to retain high power and energy performance even for devices with 104-fold increased viscosity.

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