ChemElectroChem · 2016 · 90 citations · 32 references
Materials ScienceOxygen Reduction ReactionChemical EngineeringEngineeringBattery Electrode MaterialsBifunctional ElectrocatalystsNanomaterialsCarbon-based MaterialGrapheneEnergy StorageDual Support SystemCobalt PhosphideChemistryElectrochemical ProcessWater ElectrolysisWater SplittingCop NanoparticlesElectrochemistry
Abstract Efficient bifunctional electrocatalysts for both the cathodic hydrogen evolution reaction (HER) and anodic oxygen evolution reaction (OER) are crucial for water splitting in a sustainable energy system. A strategy for fabricating strongly coupled cobalt phosphide (CoP)/graphene (G) architectures composed of CoP nanoparticles and G is described. Benefiting from synergetic effects of a dual support system of CoP for electroactive sites and G to enhance charge transfer, low overpotentials of 120 mV for the HER (0.5 m H 2 SO 4 ) and 292 mV for the OER (1 m KOH) are required to achieve current densities of 10 mA cm −2 . The as‐prepared CoP/G composites, which serve as bifunctional catalysts for both HER and OER in complete water splitting, can generate a current density of 10 mA cm −2 at 1.626 V. The present strategy provides a novel and efficient method for configuring high‐efficiency electrocatalysts for energy‐related storage and conversion devices.
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Youngmin Lee, Jin Suntivich, Kevin J. May et al. · The Journal of Physical Chemistry Letters · 2012 · 3.4K citations
Materials Science, Oxygen Reduction Reaction, Chemical Engineering +14
Liang-Liang Feng, Guangtao Yu, Yuanyuan Wu et al. · Journal of the American Chemical Society · 2015 · 1.8K citations