Chemistry Letters · 2021 · 11 citations · 38 references
Materials ScienceMnooh-based Mineral ElectrocatalystChemical EngineeringOxygen Reduction ReactionMnooh Mineral ElectrocatalystSurface DefectsEngineeringSurface ElectrochemistryNatural OreCatalysisChemistryWater SplittingWater ElectrolysisMineral ProcessingBall Milling TreatmentElectrochemistryNaturally Occurring Ore
Abstract A MnOOH-based mineral electrocatalyst for the oxygen evolution reaction was developed using a natural ore that is typically insulating, simply by applying a ball milling treatment. This material catalytically decomposed water molecules to generate oxygen. Mn K-edge X-ray absorption spectroscopy analyses in the bulk and surface sensitive modes indicated that structural distortion at the surface provided the catalytically active sites. The formation of oxygen vacancies on natural ore surfaces is likely to be the key to developing efficient mineral electrocatalysts.
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Yongtao Meng, Wenqiao Song, Hui Huang et al. · Journal of the American Chemical Society · 2014 · 1.1K citations
Materials Science, Oxygen Reduction Reaction, Engineering +12