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Recent advances in the mechanisms of the hydrogen evolution reaction by non-innocent sulfur-coordinating metal complexes 被引量:4

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摘要 Efficient hydrogen generation from aqueous protons through direct conversion of solar energy is an essential prerequisite of a future hydrogen economy and easily accessible renewable energy.For achieving this goal,the effective synthesis of a catalyst that can promote the hydrogen evolution reaction(HER)is in demand.Several mononuclear non-noble metal complexes carrying non-innocent S donating ligands have been reported as efficient photocatalysts and electrocatalysts for proton reduction.A thorough understanding of the elementary steps of hydrogen formation allows one to derive structure-property relationships that can guide future catalyst design.In this review,we highlight the mechanisms of the homogeneous HER for these catalysts in the light of photocatalytic,electrocatalytic and computational data with the main concern of elucidating the interplay between the localization of the electron density and the hydrogen evolution reaction pathway.In addition,the effects ofπ-conjugation,heteroatoms and electron accepting/donating moieties on the basicity of the metal center and catalyst overpotential are discussed to rationalize the formation of a metal or ligand hydrid intermediate.Moreover,some suggestions are provided for future use in the design of effective HER catalysts.
出处 《Inorganic Chemistry Frontiers》 2020年第1期37-71,共35页 无机化学前沿(英文)
基金 support.M.D.is also grateful for the support from the Onassis Foundation–Scholarship(ID:G ZO 005-1/2018-2019) the co-funding by Greece and the European Union(European Social Fund–ESF)through the Operational Programme“Human Resources Development,Education and Lifelong Learning”in the context of the project“Strengthening Human Resources Research Potential via Doctorate Research”(MIS-5000432) implemented by the State Scholarships Foundation(IKY).
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