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Al2Pt for Oxygen Evolution in Water Splitting: A Strategy for Creating Multifunctionality in Electrocatalysis
Authors:Iryna Antonyshyn  Ana M Barrios Jimnez  Olga Sichevych  Ulrich Burkhardt  Igor Veremchuk  Marcus Schmidt  Alim Ormeci  Ioannis Spanos  Andrey Tarasov  Detre Teschner  Gerardo Algara‐Siller  Robert Schlgl  Yuri Grin
Institution:Iryna Antonyshyn,Ana M. Barrios Jiménez,Olga Sichevych,Ulrich Burkhardt,Igor Veremchuk,Marcus Schmidt,Alim Ormeci,Ioannis Spanos,Andrey Tarasov,Detre Teschner,Gerardo Algara‐Siller,Robert Schlögl,Yuri Grin
Abstract:The production of hydrogen via water electrolysis is feasible only if effective and stable catalysts for the oxygen evolution reaction (OER) are available. Intermetallic compounds with well‐defined crystal and electronic structures as well as particular chemical bonding features are suggested here to act as precursors for new composite materials with attractive catalytic properties. Al2Pt combines a characteristic inorganic crystal structure (anti‐fluorite type) and a strongly polar chemical bonding with the advantage of elemental platinum in terms of stability against dissolution under OER conditions. We describe here the unforeseen performance of a surface nanocomposite architecture resulting from the self‐organized transformation of the bulk intermetallic precursor Al2Pt in OER.
Keywords:electrocatalysis  intermetallic phases  water splitting
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