English  |  正體中文  |  简体中文  |  Items with full text/Total items : 62805/95882 (66%)
Visitors : 3903990      Online Users : 485
RC Version 7.0 © Powered By DSPACE, MIT. Enhanced by NTU Library & TKU Library IR team.
Scope Tips:
  • please add "double quotation mark" for query phrases to get precise results
  • please goto advance search for comprehansive author search
  • Adv. Search
    HomeLoginUploadHelpAboutAdminister Goto mobile version
    Please use this identifier to cite or link to this item: https://tkuir.lib.tku.edu.tw/dspace/handle/987654321/116022


    Title: Structural and Electronic Responses to the Three Redox Levels of Fe(NO)​N2S2-​Fe(NO)​(2)
    Authors: Ghosh, Pokhraj;Ding, Shengda;Quiroz, Manuel;Bhuvanesh, Nattamai;Hsieh, Chung-Hung;Palacios, Philip M.;Pierce, Brad S.;Darensbourg, Marcetta Y.;Hall, Michael B.
    Keywords: diiron;electron buffer;EPR;metallodithiolate ligand;nitric oxide;redox levels
    Date: 2018-09-14
    Issue Date: 2019-03-16 12:12:15 (UTC+8)
    Publisher: Wiley
    Abstract: The nitrosylated diiron complexes, Fe2(NO)3, of this study are interpreted as a mono‐nitrosyl Fe(NO) unit, MNIU, within an N2S2 ligand field that serves as a metallodithiolate ligand to a dinitrosyl iron unit, DNIU. The cationic Fe(NO)N2S2⋅Fe(NO)2+ complex, 1+, of Enemark–Feltham electronic notation {Fe(NO)}7‐{Fe(NO)2}9, is readily obtained via myriad synthetic routes, and shown to be spin coupled and diamagnetic. Its singly and doubly reduced forms, {Fe(NO)}7‐{Fe(NO)2}10, 10, and {Fe(NO)}8‐{Fe(NO)2}10, 1−, were isolated and characterized. While structural parameters of the DNIU are largely unaffected by redox levels, the MNIU readily responds; the neutral, S=urn:x-wiley:09476539:media:chem201804168:chem201804168-math-0001 , complex, 10, finds the extra electron density added into the DNIU affects the adjacent MNIU as seen by the decrease its Fe‐N‐O angle (from 171° to 149°). In contrast, addition of the second electron, now into the MNIU, returns the Fe‐N‐O angle to 171° in 1−. Compensating shifts in FeMNIU distances from the N2S2 plane (from 0.518 to 0.551 to 0.851 Å) contribute to the stability of the bimetallic complex. These features are addressed by computational studies which indicate that the MNIU in 1− is a triplet‐state {Fe(NO)}8 with strong spin polarization in the more linear FeNO unit. Magnetic susceptibility and parallel mode EPR results are consistent with the triplet state assignment.
    Relation: Chemistry - A European Journal 24(60), p.16003-16008
    DOI: 10.1002/chem.201804168
    Appears in Collections:[化學學系暨研究所] 期刊論文

    Files in This Item:

    File Description SizeFormat
    index.html0KbHTML125View/Open

    All items in 機構典藏 are protected by copyright, with all rights reserved.


    DSpace Software Copyright © 2002-2004  MIT &  Hewlett-Packard  /   Enhanced by   NTU Library & TKU Library IR teams. Copyright ©   - Feedback