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July 24, 2014ChemSusChem117 citationsOpen Access

Tungsten Carbide–Nitride on Graphene Nanoplatelets as a Durable Hydrogen Evolution Electrocatalyst

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WCWei‐Fu ChenNational Taiwan UniversityJSJonathan SchneiderHasso Plattner InstituteKSKotaro SasakiBrookhaven National Laboratory

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Abstract

Alternatives to platinum-based catalysts are required to sustainably produce hydrogen from water at low overpotentials. Progress has been made in utilizing tungsten carbide-based catalysts, however, their performance is currently limited by the density and reactivity of active sites, and insufficient stability in acidic electrolytes. We report highly active graphene nanoplatelet-supported tungsten carbide-nitride nanocomposites prepared via an in situ solid-state approach. This nanocomposite catalyzes the hydrogen evolution reaction with very low overpotential and is stable operating for at least 300 h in harsh acidic conditions. The synthetic approach offers a great advantage in terms of structural control and kinetics improvement.

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Cite This Study

Chen et al. (2014) studied this question.

synapsesocial.com/papers/6a06731ac284f20de188c4b3https://doi.org/10.1002/cssc.201402454
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