article Open AccessTop 1% cited
Activating and optimizing MoS2 basal planes for hydrogen evolution through the formation of strained sulphur vacancies
Nature Materials · 2015 · Vol. 15(1) · pp. 48–53
Hong Li✉(Stanford University)Charlie Tsai(SLAC National Accelerator Laboratory)Ai Leen Koh(Stanford University)Lili Cai(Stanford University)Alex W. Contryman(SLAC National Accelerator Laboratory)Alex H. Fragapane(SLAC National Accelerator Laboratory)Jiheng Zhao(Stanford University)Hyun Soo Han(Stanford University)Hari C. Manoharan(SLAC National Accelerator Laboratory)Frank Abild‐Pedersen(SLAC National Accelerator Laboratory)Jens K. Nørskov(SLAC National Accelerator Laboratory)Xiaolin Zheng(Stanford University)
Electrocatalysts for Energy Conversion2D Materials and ApplicationsMXene and MAX Phase MaterialsCatalysisBasal planeMonolayerHydrogenMolybdenumVacancy defectMolybdenum disulfideMaterials scienceInertSulfur
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References
Conducting MoS<sub>2</sub> Nanosheets as Catalysts for Hydrogen Evolution Reaction
Nano Letters · 2013 · 2,151 citations
Engineering the surface structure of MoS2 to preferentially expose active edge sites for electrocatalysis
Nature Materials · 2012 · 3,178 citations
Catalyzing the Hydrogen Evolution Reaction (HER) with Molybdenum Sulfide Nanomaterials
ACS Catalysis · 2014 · 1,580 citations
Enhanced Hydrogen Evolution Catalysis from Chemically Exfoliated Metallic MoS<sub>2</sub> Nanosheets
Journal of the American Chemical Society · 2013 · 3,271 citations
Trends in the Exchange Current for Hydrogen Evolution
Journal of The Electrochemical Society · 2005 · 5,664 citations
Lattice-strain control of the activity in dealloyed core–shell fuel cell catalysts
Nature Chemistry · 2010 · 2,896 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
Computational high-throughput screening of electrocatalytic materials for hydrogen evolution
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