scholarly article | Q13442814 |
P356 | DOI | 10.1126/SCIENCE.1215868 |
P698 | PubMed publication ID | 22323816 |
P50 | author | Jeffrey R. Long | Q87687334 |
P2093 | author name string | Christopher J Chang | |
Yujie Sun | |||
Hemamala I Karunadasa | |||
Marcin Majda | |||
Elizabeth Montalvo | |||
P2860 | cites work | Small molecule mimics of hydrogenases: hydrides and redox | Q33393660 |
A molecular molybdenum-oxo catalyst for generating hydrogen from water | Q33567615 | ||
Hydrogenases: hydrogen-activating enzymes | Q34121099 | ||
Biomimetic hydrogen evolution: MoS2 nanoparticles as catalyst for hydrogen evolution | Q34410925 | ||
Enzymes as working or inspirational electrocatalysts for fuel cells and electrolysis | Q37213721 | ||
Hydrogen evolution by cobalt tetraimine catalysts adsorbed on electrode surfaces | Q43196950 | ||
Rapid water reduction to H2 catalyzed by a cobalt bis(iminopyridine) complex | Q45126755 | ||
MoS2 nanoparticles grown on graphene: an advanced catalyst for the hydrogen evolution reaction | Q46436469 | ||
Molybdenum-sulfur dimers as electrocatalysts for the production of hydrogen at low overpotentials. | Q46688932 | ||
Molecular cobalt pentapyridine catalysts for generating hydrogen from water | Q46897686 | ||
Size-dependent structure of MoS2 nanocrystals | Q47223980 | ||
Atomic-Scale Edge Structures on Industrial-Style MoS2 Nanocatalysts | Q56333311 | ||
Identification of Active Edge Sites for Electrochemical H2 Evolution from MoS2 Nanocatalysts | Q56740535 | ||
Amorphous molybdenum sulfide films as catalysts for electrochemical hydrogen production in water | Q57319953 | ||
Toward a Total Model for the Molybdenum Hydroxylases: Synthesis, Redox, and Biomimetic Chemistry of Oxo-thio-Mo(VI) and -Mo(V) Complexes | Q57610355 | ||
Atomic-scale insight into structure and morphology changes of MoS2 nanoclusters in hydrotreating catalysts | Q57640851 | ||
P433 | issue | 6069 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 698-702 | |
P577 | publication date | 2012-02-01 | |
P1433 | published in | Science | Q192864 |
P1476 | title | A molecular MoS₂ edge site mimic for catalytic hydrogen generation | |
P478 | volume | 335 |
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Q56995386 | A self-supported NiMoS4 nanoarray as an efficient 3D cathode for the alkaline hydrogen evolution reaction |
Q50996232 | A strategy to synergistically increase the number of active edge sites and the conductivity of MoS2 nanosheets for hydrogen evolution. |
Q53364601 | A water-soluble glucose-functionalized cobalt(III) complex as an efficient electrocatalyst for hydrogen evolution under neutral conditions. |
Q46673919 | Activation and dissociation of CO2 on the (001), (011), and (111) surfaces of mackinawite (FeS): A dispersion-corrected DFT study. |
Q57922842 | Activation of Ternary Transition Metal Chalcogenide Basal Planes through Chemical Strain for the Hydrogen Evolution Reaction |
Q51171411 | Aligned MoOx /MoS2 Core-Shell Nanotubular Structures with a High Density of Reactive Sites Based on Self-Ordered Anodic Molybdenum Oxide Nanotubes. |
Q28597674 | Ammonia intercalated flower-like MoS2 nanosheet film as electrocatalyst for high efficient and stable hydrogen evolution |
Q51064724 | Amorphous carbon supported MoS₂ nanosheets as effective catalysts for electrocatalytic hydrogen evolution. |
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Q58733936 | Anisotropic Polymer Adsorption on Molybdenite Basal and Edge Surfaces and Interaction Mechanism With Air Bubbles |
Q64090901 | Atomically engineering activation sites onto metallic 1T-MoS2 catalysts for enhanced electrochemical hydrogen evolution |
Q27332393 | Atomically isolated nickel species anchored on graphitized carbon for efficient hydrogen evolution electrocatalysis |
Q53047411 | Atomistic observation of the collision and migration of Li on MoSe2 and WS2 surfaces through ab initio molecular dynamics. |
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Q36884083 | Direct observation of intermediates formed during steady-state electrocatalytic O2 reduction by iron porphyrins |
Q47259994 | Direct-current triboelectricity generation by a sliding Schottky nanocontact on MoS2 multilayers |
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Q55405730 | Doping-induced structural phase transition in cobalt diselenide enables enhanced hydrogen evolution catalysis. |
Q58398783 | Drastic Layer-Number-Dependent Activity Enhancement in Photocatalytic H2Evolution overnMoS2/CdS (n≥ 1) Under Visible Light |
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Q55347422 | Edge overgrowth of spiral bimetallic hydroxides ultrathin-nanosheets for water oxidation. |
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Q36363215 | Effect of Doping on Hydrogen Evolution Reaction of Vanadium Disulfide Monolayer. |
Q51098353 | Efficient Electrochemical and Photoelectrochemical Water Splitting by a 3D Nanostructured Carbon Supported on Flexible Exfoliated Graphene Foil. |
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Q47837552 | Electro- and Photocatalytic Generation of H2 Using a Distinctive CoII "PN3 P" Pincer Supported Complex with Water or Saturated Saline as a Hydrogen Source |
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Q37377514 | Electrochemical tuning of vertically aligned MoS2 nanofilms and its application in improving hydrogen evolution reaction. |
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Q56522931 | Enhanced Electrocatalysis for Hydrogen Evolution Reactions from WS2Nanoribbons |
Q33784429 | Enhanced Photocatalytic Activity of WS2 Film by Laser Drilling to Produce Porous WS2/WO3 Heterostructure |
Q87054731 | Enhanced catalytic activity in strained chemically exfoliated WS₂ nanosheets for hydrogen evolution |
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Q52706169 | Fe, Ru, and Os complexes with the same molecular framework: comparison of structures, properties and catalytic activities. |
Q35666371 | Few layered MoS2 lithography with an AFM tip: description of the technique and nanospectroscopy investigations |
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