Issue 11, 2013

High-energy supercapacitors based on hierarchical porous carbon with an ultrahigh ion-accessible surface area in ionic liquid electrolytes

Abstract

A very important yet really challenging issue to address is how to greatly increase the energy density of supercapacitors to approach or even exceed those of batteries without sacrificing the power density. Herein we report the fabrication of a new class of ultrahigh surface area hierarchical porous carbon (UHSA-HPC) based on the pore formation and widening of polystyrene-derived HPC by KOH activation, and highlight its superior ability for energy storage in supercapacitors with ionic liquid (IL) as electrolyte. The UHSA-HPC with a surface area of more than 3000 m2 g−1 shows an extremely high energy density, i.e., 118 W h kg−1 at a power density of 100 W kg−1. This is ascribed to its unique hierarchical nanonetwork structure with a large number of small-sized nanopores for IL storage and an ideal meso-/macroporous network for IL transfer.

Graphical abstract: High-energy supercapacitors based on hierarchical porous carbon with an ultrahigh ion-accessible surface area in ionic liquid electrolytes

Supplementary files

Article information

Article type
Communication
Submitted
10 Feb 2013
Accepted
30 Mar 2013
First published
08 Apr 2013

Nanoscale, 2013,5, 4678-4682

High-energy supercapacitors based on hierarchical porous carbon with an ultrahigh ion-accessible surface area in ionic liquid electrolytes

H. Zhong, F. Xu, Z. Li, R. Fu and D. Wu, Nanoscale, 2013, 5, 4678 DOI: 10.1039/C3NR00738C

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