articleTop 1% cited
Building an appropriate active-site motif into a hydrogen-evolution catalyst with thiomolybdate [Mo3S13]2− clusters
Nature Chemistry · 2014 · Vol. 6(3) · pp. 248–253
Jakob Kibsgaard✉(Aarhus University)Thomas F. Jaramillo(Stanford University)Flemming Besenbacher(Aarhus University)
Electrocatalysts for Energy ConversionMetalloenzymes and iron-sulfur proteinsNanocluster Synthesis and ApplicationsNanoclustersCatalysisChemistryActive siteHydrogenInertMetalNoble metalTurnover numberNanotechnology
MeSH terms
CatalysisHydrogenMolybdenumSurface PropertiesCatalytic Domain
Citations
823
FWCI
28.84
field-weighted impact
References
44
Percentile
100%
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References
Solar Water Splitting Cells
Chemical Reviews · 2010 · 9,183 citations
Engineering the surface structure of MoS2 to preferentially expose active edge sites for electrocatalysis
Nature Materials · 2012 · 3,178 citations
Amorphous Molybdenum Sulfide Catalysts for Electrochemical Hydrogen Production: Insights into the Origin of their Catalytic Activity
ACS Catalysis · 2012 · 1,078 citations
Accelerating materials development for photoelectrochemical hydrogen production: Standards for methods, definitions, and reporting protocols
Journal of materials research/Pratt's guide to venture capital sources · 2009 · 1,173 citations
MoS<sub>2</sub> Nanoparticles Grown on Graphene: An Advanced Catalyst for the Hydrogen Evolution Reaction
Journal of the American Chemical Society · 2011 · 4,931 citations
Ni–Mo Nanopowders for Efficient Electrochemical Hydrogen Evolution
ACS Catalysis · 2012 · 780 citations
Fe, Co, and Ni ions promote the catalytic activity of amorphous molybdenum sulfide films for hydrogen evolution
Chemical Science · 2012 · 926 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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Building an appropriate active-site motif into a hydrogen-evolution catalyst with thiomolybdate [Mo3S13]2− clusters
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