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MoS<sub>2</sub> Nanoparticles Grown on Graphene: An Advanced Catalyst for the Hydrogen Evolution Reaction

Journal of the American Chemical Society · 2011 · Vol. 133(19) · pp. 7296–7299
Yanguang LiHailiang WangLiming XieYongye LiangGuosong HongHongjie Dai

Abstract

Advanced materials for electrocatalytic and photoelectrochemical water splitting are central to the area of renewable energy. In this work, we developed a selective solvothermal synthesis of MoS(2) nanoparticles on reduced graphene oxide (RGO) sheets suspended in solution. The resulting MoS(2)/RGO hybrid material possessed nanoscopic few-layer MoS(2) structures with an abundance of exposed edges stacked onto graphene, in strong contrast to large aggregated MoS(2) particles grown freely in solution without GO. The MoS(2)/RGO hybrid exhibited superior electrocatalytic activity in the hydrogen evolution reaction (HER) relative to other MoS(2) catalysts. A Tafel slope of ∼41 mV/decade was measured for MoS(2) catalysts in the HER for the first time; this exceeds by far the activity of previous MoS(2) catalysts and results from the abundance of catalytic edge sites on the MoS(2) nanoparticles and the excellent electrical coupling to the underlying graphene network. The ∼41 mV/decade Tafel slope suggested the Volmer-Heyrovsky mechanism for the MoS(2)-catalyzed HER, with electrochemical desorption of hydrogen as the rate-limiting step.

Electrocatalysts for Energy ConversionAdvanced Photocatalysis TechniquesCopper-based nanomaterials and applicationsTafel equationGrapheneCatalysisChemistryElectrochemistryNanoparticleOxideChemical engineeringHydrogenWater splitting
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References
Solar Water Splitting Cells
Chemical Reviews · 2010 · 9,183 citations
Artificial Photosynthesis: Solar Splitting of Water to Hydrogen and Oxygen
Accounts of Chemical Research · 1995 · 2,554 citations
Biomimetic Hydrogen Evolution:  MoS<sub>2</sub>Nanoparticles as Catalyst for Hydrogen Evolution
Journal of the American Chemical Society · 2005 · 3,959 citations
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