4.7 Article

A combined experimental and theoretical study on a single, unsupported oxo-bridged Mn(III,III) dimer coordinated to two iminobenzosemiquinone π-radical anions

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DALTON TRANSACTIONS
卷 50, 期 25, 页码 8768-8775

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d1dt00489a

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资金

  1. Indian Institute of Technology Guwahati (IITG)
  2. FIST programme, DST, India
  3. Czech Academy of Sciences [RVO 61388963]
  4. Czech Science Foundation [P208/12/G016, 19-27454X]
  5. (SERB), India [CRG/2020/000441]

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The study synthesized a mono(oxo)-bridged dinuclear manganese complex with an iminobenzosemiquinone form of the 2-aminophenol unit in the ligand. The complex exhibited antiferromagnetic couplings and a complex electronic structure, with specific UV-Vis-NIR absorption characteristics.
Ligand H2LAP comprises a non-innocent 2-aminophenol unit and an innocent bis(pyridin-2-ylmethyl)amine unit. The ligand, upon reaction with an equivalent amount of Mn(ClO4)(2)center dot 6H(2)O in the presence of Et3N under air in MeOH, provided a mono(oxo)-bridged dinuclear Mn-2 complex ({[(L-ISQ)Mn-III-O-Mn-III(L-ISQ)][(ClO4)](2)}; 1). X-ray crystal structure analysis of complex 1 revealed that in the dicationic unit, the physical oxidation state of each Mn ion was +III and the 2-aminophenol unit of ligand H2LAP was in its one-electron oxidized iminobenzosemiquinone form. H-1-NMR measurement of complex 1 confirmed that the complex acquired a diamagnetic ground state (S-t = 0). Thus, antiferromagnetic couplings among the paramagnetic centers were realized. The UV-Vis-NIR spectrum of complex 1 was consisted of ligand-to-metal charge-transfer transitions in the visible region, while ligand-to-metal and metal-to-ligand charge-transfer transitions were noticed in the near-infrared region due to the presence of iminobenzosemiquinone radical units. The cyclic voltammogram of the complex showed three one-electron oxidation waves and two one-electron reduction waves. While the first two oxidation processes were metal-based, the two successive reductions were ligand-centered. DFT-based theoretical studies confirmed the assignment.

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