Cell Reports Physical Science · 2022 · 61 citations · 48 references
Materials ScienceGreen Hydrogen ProductionChemical EngineeringOxygen Reduction ReactionEngineeringNanoengineeringBattery Electrode MaterialsElectrolyzer CellJanus Catalytic MaterialJanus Cerium-doped BismuthWater ElectrolyzersCatalysisChemistryWater SplittingWater ElectrolysisElectrolysis Of WaterElectrochemistry
Green hydrogen production from water electrolysis typically requires a set of two catalysts for triggering both hydrogen and oxygen production. Here, we report cerium-doped α-Bi2O3 nanosheets covered with reduced graphene oxide capable of both electrocatalytic oxygen evolution reaction and hydrogen evolution reaction in the same alkaline media. This rationally designed material achieves oxygen evolution and hydrogen production current density of 10 mA cm−2 at relatively low overpotentials of 0.245 and 0.334 V, respectively, while retaining its reactivity over 24 h with minimal loss of Faradaic efficiency. A two-electrode setup is devised by immobilizing this robust and dual-active electrocatalyst on commercially available stainless steel (SS) mesh, which operates at a relatively low cell voltage (1.78 V). The electrocatalytic reactivity remains intact even after cross-polarization. Hence this Janus catalytic material may be an apt choice for developing an economical, efficient, eco-friendly alkaline water electrolyzer.
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A Janus cobalt-based catalytic material for electro-splitting of water
Saioa Cobo, Jonathan Heidkamp, Pierre-André Jacques et al. · Nature Materials · 2012 · 827 citations · Full text
Chemical reduction of graphene oxide using green reductants
K. Kanishka H. De Silva, Hsin‐Hui Huang, Rakesh Joshi et al. · Carbon · 2017 · 621 citations
Graphene Nanomeshes, Chemical Engineering, Green Reductants +5