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Mini-Review on the Redox Additives in Aqueous Electrolyte for High Performance Supercapacitors

ACS Omega · 2020 · Vol. 5(8) · pp. 3801–3808
Wei QinNingfang ZhouChun WuMingming XieHengchao SunYan GuoLikun Pan

Abstract

Supercapacitors, also known as electrochemical capacitors, are attracting much research attention owing to their high power density, long-term cycling stability, as well as exceptional safety compared with rechargeable batteries, although the globally accepted quantitative benchmarks on the power density, cycling stability, and safety are yet to be established. However, it should be noted that the supercapacitors generally exhibit low energy density, which cannot satisfy the demands where both high energy density and power density are needed. To date, various methods have been employed to improve the electrochemical performances of supercapacitors. Among them, introducing redox additives (or redox mediators) into conventional aqueous electrolyte is regarded as one of the most promising strategies. The redox additives in aqueous electrolyte are widely demonstrated to be able to increase the charge storage capability via redox transformation and thus enhance the electrochemical performances. Herein, we present a brief review on the classification, state-of-the-art progress, challenges, and perspectives of the redox additives in aqueous electrolyte for high performance supercapacitors.

Supercapacitor Materials and FabricationAdvanced battery technologies researchElectrocatalysts for Energy ConversionSupercapacitorElectrolyteRedoxElectrochemistryMaterials sciencePower densityEnergy storageCapacitorElectrochemical energy storageAqueous solution

Funding

  • Education Department of Hunan Province
  • National Natural Science Foundation of China
  • Natural Science Foundation of Hunan Province
Citations
239
FWCI
8.84
field-weighted impact
References
25
Percentile
99%
vs. same field & year
Citations per year
References
Review on supercapacitors: Technologies and materials
Renewable and Sustainable Energy Reviews · 2016 · 2,844 citations
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