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Manganese oxide-based materials as electrochemical supercapacitor electrodes

Chemical Society Reviews · 2010 · Vol. 40(3) · pp. 1697–1721
Weifeng WeiXinwei CuiWeixing ChenDouglas G. Ivey

Abstract

Electrochemical supercapacitors (ECs), characteristic of high power and reasonably high energy densities, have become a versatile solution to various emerging energy applications. This critical review describes some materials science aspects on manganese oxide-based materials for these applications, primarily including the strategic design and fabrication of these electrode materials. Nanostructurization, chemical modification and incorporation with high surface area, conductive nanoarchitectures are the three major strategies in the development of high-performance manganese oxide-based electrodes for EC applications. Numerous works reviewed herein have shown enhanced electrochemical performance in the manganese oxide-based electrode materials. However, many fundamental questions remain unanswered, particularly with respect to characterization and understanding of electron transfer and atomic transport of the electrochemical interface processes within the manganese oxide-based electrodes. In order to fully exploit the potential of manganese oxide-based electrode materials, an unambiguous appreciation of these basic questions and optimization of synthesis parameters and material properties are critical for the further development of EC devices (233 references).

Supercapacitor Materials and FabricationAdvancements in Battery MaterialsAdvanced battery technologies researchSupercapacitorMaterials scienceElectrodeElectrochemistryManganeseNanotechnologyOxideManganese oxideFabricationElectrochemical energy conversion
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References
Supercapacitor Behavior with KCl Electrolyte
Journal of Solid State Chemistry · 1999 · 1,115 citations
Nanocrystalline oxide supercapacitors
Materials Chemistry and Physics · 2002 · 272 citations
Insertion Electrode Materials for Rechargeable Lithium Batteries
Advanced Materials · 1998 · 2,916 citations
Materials for electrochemical capacitors
Nature Materials · 2008 · 15,889 citations
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