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    Please use this identifier to cite or link to this item: https://tkuir.lib.tku.edu.tw/dspace/handle/987654321/98607


    Title: Redox active iron nitrosyl units in proton reduction electrocatalysis
    Authors: Hsieh, Chung-Hung;Shengda Ding;Özlen F. Erdem;Danielle J. Crouthers;Tianbiao Liu;Charles C. L. McCrory;Wolfgang Lubitz;Codrina V. Popescu;Joseph H. Reibenspies;Michael B. Hall;Marcetta Y. Darensbourg
    Contributors: 淡江大學化學學系
    Keywords: Chemical sciences;Catalysis;Inorganic chemistry
    Date: 2014-05-02
    Issue Date: 2014-08-27 09:49:17 (UTC+8)
    Publisher: London: Nature Publishing Group
    Abstract: Base metal, molecular catalysts for the fundamental process of conversion of protons and electrons to dihydrogen, remain a substantial synthetic goal related to a sustainable energy future. Here we report a diiron complex with bridging thiolates in the butterfly shape of the 2Fe2S core of the [FeFe]-hydrogenase active site but with nitrosyl rather than carbonyl or cyanide ligands. This binuclear [(NO)Fe(N2S2)Fe(NO)2]+ complex maintains structural integrity in two redox levels; it consists of a (N2S2)Fe(NO) complex (N2S2=N,N′-bis(2-mercaptoethyl)-1,4-diazacycloheptane) that serves as redox active metallodithiolato bidentate ligand to a redox active dinitrosyl iron unit, Fe(NO)2. Experimental and theoretical methods demonstrate the accommodation of redox levels in both components of the complex, each involving electronically versatile nitrosyl ligands. An interplay of orbital mixing between the Fe(NO) and Fe(NO)2 sites and within the iron nitrosyl bonds in each moiety is revealed, accounting for the interactions that facilitate electron uptake, storage and proton reduction.
    Relation: Nature Communications 5, 3684
    DOI: 10.1038/ncomms4684
    Appears in Collections:[化學學系暨研究所] 期刊論文

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