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Transition Metal Oxide Electrode Materials for Supercapacitors: A Review of Recent Developments

Nanomaterials · 2021 · Vol. 11(5) · pp. 1248–1248
Ruibin LiangYongquan DuPeng XiaoJunyang ChengShengjin YuanChen Yong-longJian YuanJianwen Chen

Abstract

In the past decades, the energy consumption of nonrenewable fossil fuels has been increasing, which severely threatens human life. Thus, it is very urgent to develop renewable and reliable energy storage devices with features of environmental harmlessness and low cost. High power density, excellent cycle stability, and a fast charge/discharge process make supercapacitors a promising energy device. However, the energy density of supercapacitors is still less than that of ordinary batteries. As is known to all, the electrochemical performance of supercapacitors is largely dependent on electrode materials. In this review, we firstly introduced six typical transition metal oxides (TMOs) for supercapacitor electrodes, including RuO<sub>2</sub>, Co<sub>3</sub>O<sub>4</sub>, MnO<sub>2</sub>, ZnO, XCo<sub>2</sub>O<sub>4</sub> (X = Mn, Cu, Ni), and AMoO<sub>4</sub> (A = Co, Mn, Ni, Zn). Secondly, the problems of these TMOs in practical application are presented and the corresponding feasible solutions are clarified. Then, we summarize the latest developments of the six TMOs for supercapacitor electrodes. Finally, we discuss the developing trend of supercapacitors and give some recommendations for the future of supercapacitors.

Supercapacitor Materials and FabricationAdvancements in Battery MaterialsElectrochemical sensors and biosensorsSupercapacitorMaterials scienceEnergy storageOxideNanotechnologyPower densityRenewable energyCapacitanceElectrodeElectrochemistry

Funding

  • National Natural Science Foundation of China
Citations
572
FWCI
22.96
field-weighted impact
References
193
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100%
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