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3D carbon based nanostructures for advanced supercapacitors

Energy & Environmental Science · 2012 · Vol. 6(1) · pp. 41–53
Hao JiangPooi See LeeChunzhong Li

Abstract

Supercapacitors have attracted intense attention due to their great potential to meet the demand of both high energy density and power density in many advanced technologies. Various carbon-based nanocomposites are currently pursued as supercapacitor electrodes because of the synergistic effect between carbon (high power density) and pseudo-capacitive nanomaterials (high energy density). This feature article aims to review most recent progress on 3D (3D) carbon based nanostructures for advanced supercapacitor applications in view of their structural intertwinement which not only create the desired hierarchical porous channels, but also possess higher electrical conductivity and better structural mechanical stability. The carbon nanostructures comprise of CNTs-based networks, graphene-based architectures, hierarchical porous carbon-based nanostructures and other even more complex carbon-based 3D configurations. Their advantages and disadvantages are compared and summarized based on the results published in the literature. In addition, we also discuss and view the ongoing trends in materials development for advanced supercapacitors.

Supercapacitor Materials and FabricationAdvancements in Battery MaterialsGraphene research and applicationsSupercapacitorNanotechnologyMaterials scienceCarbon fibersPower densityGrapheneNanostructureNanocompositeNanomaterialsCapacitance

Funding

  • National Natural Science Foundation of China
Citations
1,497
FWCI
43.37
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100
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100%
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References
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Journal of Solid State Chemistry · 1999 · 1,115 citations
Measurement of the quantum capacitance of graphene
Nature Nanotechnology · 2009 · 1,686 citations
Exfoliated Graphene Separated by Platinum Nanoparticles
Chemistry of Materials · 2008 · 1,115 citations
Graphene-based nanomaterials for energy storage
Energy & Environmental Science · 2010 · 1,267 citations
What Are Batteries, Fuel Cells, and Supercapacitors?
Chemical Reviews · 2004 · 7,202 citations
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