4.7 Article

Multistep Oxidation of Diethynyl Oligophenylamine-Bridged Diruthenium and Diiron Complexes

Journal

INORGANIC CHEMISTRY
Volume 56, Issue 2, Pages 1001-1015

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.6b02809

Keywords

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Funding

  1. National Natural Science Foundation of China [21272088, 21472059, 21402057]
  2. self-determined research funds of CCNU from colleges' basic research and operation of MOE [CCNU14A05009, CCNU14F01003]
  3. Excellent Doctoral Dissertation Cultivation Grant from Central China Normal University [2015YBYB108, 2016YBZZ040]

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Homo-dinuclear nonlinear complexes, [{M(dppe)-Cp *}(2){mu-(-C C)(2)X}] (dppe = 1,2-bis(diphenylphosphino) ethane; Cp* = eta(5)-C5Me5; X = triphenylamine ,(TPA), M = Ru (1a) and. Fe (1b); X = N,N,N',N'-tetrapheriylphenylene-1,4-diamine (TPPD), M = Ru (2a)) were prepared and characterized by H-1, C-13, and P-31 NMR spectroscopy and single-crystal X-ray diffraction (la, 2a). Attempts to prepare the diiron anatogue of 2a were not successful. Experimental data obtained from cyclic voltammetry, square wave voltammetry, UV-vis- NIR (NIR = near-infrared)spectro-electrochemistry, and very informative IR spectro-electrochemistry in the C C stretching region, combined with density functional theOry calculations, afford to make an emphasizing assessment of the close association between the metal ethynyl termini and the oligophenylamine bridge core as well as their respective involvement in sequential one-electron oxidations of these complexes. The anodic behavior of the horno-bimetallic complexes depends strongly both on the metal center and the length of the oligophenylamine bridge core. The poorly separated first two oxidations of diiron complex 1b are localized on the electronically nearly independent Fe termini. In contrast, diruthenium complex 1a exhibits a significantly delocalized character and a marked electronic communication between the ruthenium centers through the diethynyl-TPA bridge. The ruthenium- ethynyl halves in 2a, separated by the doubly extended and more flexible TPPD bridge core, show a lower degree of electronic coupling, resulting in close-lying first two anodic waves and the NIR electronic absorption of [2a](+) with an indistinctive intervalence charge transfer character. Finally, the third anodic waves in the voltammetric responses of the homo-bimetallic complexes are associated with the concurrent exclusive oxidation of the TPA or TPPD bridge cores.

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