Tungsten Carbide and CNT-Graphene-Supported Pd Electrocatalyst toward Electrooxidation of Hydrogen

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초록

Development of platinum-free catalysts is urgently needed to make fuel cells a competitive technology for power generation in various fields. Here we report that combination of palladium and tungsten carbides supported on carbon nanotubes (CNT) graphene (GR) composite exhibits high activity for electrochemical hydrogen oxidation reaction. In the cyclic voltammetry, the electrochemical active surface area of Pd/WC/CNT-GR is much larger than that of other synthesized catalysts and even commercial Pt/C catalyst. In single cell operation, Pd/WC/CNT-GR shows 65% of the maximum power density of the state-of-the-art Pt/C catalyst and loses only 5% of maximum power density after 50h. Beneficial roles of WC and CNT-GR are discussed for the improved performance of palladium catalysts.

키워드

carbonfuel cellsgraphenepalladiumtungstenPEM FUEL-CELLTRANSITION-METAL CARBIDESOXYGEN REDUCTION REACTIONHYBRID SUPPORTOXIDATIONCATALYSTSELECTRODEPERFORMANCESTABILITYNANOPARTICLE
제목
Tungsten Carbide and CNT-Graphene-Supported Pd Electrocatalyst toward Electrooxidation of Hydrogen
저자
Han, SuenghoonYoun, Duck HyunLee, Min HeeLee, Jae Sung
DOI
10.1002/cctc.201500154
발행일
2015-05
유형
Article
저널명
ChemCatChem
7
9
페이지
1483 ~ 1489