Applied Surface Science, Vol.360, 807-815, 2016
The composite capacitive behaviors of the N and S dual doped ordered mesoporous carbon with ultrahigh doping level
Heteroatoms doping provides a promising strategy for improving the energy density of supercapacitors based on the carbon electrodes. In this paper, we present a N and S dual doped ordered mesoporous carbon with ultrahigh doping level using dimethylglyoxime as pristine precursor. The N doping content of the reported materials varies from 6.6 to 15.6 at.% dependent on the carbonization temperature, and the S doping content varies from 0.46 to 1.01 at.%. Due to the ultrahigh heteroatoms doping content, the reported materials exhibit pronounced pseudo-capacitance. Meanwhile, the reported materials exhibit high surface areas (640-869 m(2) g(-1)), large pore volume (0.71-1.08 cm(2) g(-1)) and ordered pore structure. The outstanding textual properties endow the reported materials excellent electrical double-layer capacitance (EDLC). By effectively combining the pseudo-capacitance with EDLC, the reported materials exhibit a surprising energy storage/relax capacity with the highest specific capacitance of 565 F g(-1), which value is 3.3 times higher than that of pristine CMK-3, and can compete against some conventional pseudo-capacitance materials. (C) 2015 Published by Elsevier B.V.