학술논문

Reduced graphene oxide-supported nickel oxide catalyst with improved CO tolerance for formic acid electrooxidation.
Document Type
Article
Source
International Journal of Hydrogen Energy. Aug2014, Vol. 39 Issue 24, p12572-12577. 6p.
Subject
*FORMIC acid
*GRAPHENE oxide
*CYCLIC voltammetry
*FOURIER transform infrared spectroscopy
*NICKEL oxide
*CHRONOAMPEROMETRY
Language
ISSN
0360-3199
Abstract
The superior catalytic activity along with improved CO tolerance for formic acid electrooxidation has been demonstrated on a NiO-decorated reduced graphene oxide (rGO) catalyst. The cyclic voltammetry response of rGO-NiO/Pt catalyst elucidates improved CO tolerance and follows direct oxidation pathway. It is probably due to the beneficial effect of residual oxygen groups on rGO support which is supported by FT-IR spectrum. A strong interaction of rGO support with NiO nanoparticles facilitates the removal of CO from the catalyst surface. The chronoamperometric response indicates a higher catalytic activity and stability of rGO-NiO/Pt catalyst than the NiO/Pt and unmodified Pt electrode catalyst for a prolonged time of continuous oxidation of formic acid. [ABSTRACT FROM AUTHOR]