Highly Active and Stable Hydrogen Evolution Electrocatalysts Based on Molybdenum Compounds on Carbon Nanotube-Graphene Hybrid Support

  • Youn, Duck Hyun
  • Han, Suenghoon
  • Kim, Jae Young
  • Kim, Jae Yul
  • Park, Hunmin
  • 외 2명
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초록

Highly active and stable electrocatalysts for hydrogen evolution have been developed on the basis of molybdenum compounds (MO2C, MO2N, and MoS2) on carbon nanotube (CNT)-graphene hybrid support via a modified urea-glass route. By a simple modification of synthetic variables, the final phases are easily controlled from carbide, nitride to sulfide with homogeneous dispersion of nanocrystals on the CNT-graphene support. Among the prepared catalysts, Mo2C/CNT-graphene shows the highest activity for hydrogen evolution reaction with a small onset overpotential of 62 mV and Tafel slope of 58 mV/dec as well as an excellent stability in acid media. Such enhanced catalytic activity may originate from its low hydrogen binding energy and high conductivity. Moreover, the CNT-graphene hybrid support plays crucial roles to enhance the activity of molybdenum compounds by alleviating aggregation of the nanocrystals, providing a large area to contact with electrolyte, and facilitating the electron transfer.

키워드

hydrogen evolution reactionnonprecious metal electrocatalystsmolybdenum carbidemolybdenum nitrideCNT-graphene hybridTRANSITION-METAL CARBIDESTUNGSTEN CARBIDENANOPARTICLESREDUCTIONEFFICIENTMOS2CATALYSTWATEROXIDENITRIDES
제목
Highly Active and Stable Hydrogen Evolution Electrocatalysts Based on Molybdenum Compounds on Carbon Nanotube-Graphene Hybrid Support
저자
Youn, Duck HyunHan, SuenghoonKim, Jae YoungKim, Jae YulPark, HunminChoi, Sun HeeLee, Jae Sung
DOI
10.1021/nn5012144
발행일
2014-05
유형
Article
저널명
ACS Nano
8
5
페이지
5164 ~ 5173