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Mesoporous Transition Metal Oxides for Supercapacitors

Nanomaterials · 2015 · Vol. 5(4) · pp. 1667–1689
Yan WangJin GuoTingfeng WangJunfeng ShaoDong WangYing‐Wei Yang

Abstract

Recently, transition metal oxides, such as ruthenium oxide (RuO₂), manganese dioxide (MnO₂), nickel oxides (NiO) and cobalt oxide (Co₃O₄), have been widely investigated as electrode materials for pseudo-capacitors. In particular, these metal oxides with mesoporous structures have become very hot nanomaterials in the field of supercapacitors owing to their large specific surface areas and suitable pore size distributions. The high specific capacities of these mesoporous metal oxides are resulted from the effective contacts between electrode materials and electrolytes as well as fast transportation of ions and electrons in the bulk of electrode and at the interface of electrode and electrolyte. During the past decade, many achievements on mesoporous transition metal oxides have been made. In this mini-review, we select several typical nanomaterials, such as RuO₂, MnO₂, NiO, Co₃O₄ and nickel cobaltite (NiCo₂O₄), and briefly summarize the recent research progress of these mesoporous transition metal oxides-based electrodes in the field of supercapacitors.

Supercapacitor Materials and FabricationAdvancements in Battery MaterialsAerogels and thermal insulationMesoporous materialMaterials scienceCobaltiteSupercapacitorTransition metalElectrolyteOxideNon-blocking I/ONanomaterialsCobalt

Funding

  • National Natural Science Foundation of China
  • State Key Laboratory of Laser Interaction with Matter
Citations
412
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7.47
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