Literature DB >> 26375161

Electron Hopping through Double-Exchange Coupling in a Mixed-Valence Diiminobenzoquinone-Bridged Fe2 Complex.

Alexandra I Gaudette1, Ie-Rang Jeon1, John S Anderson1, Fernande Grandjean2, Gary J Long2, T David Harris1.   

Abstract

The ability of a benzoquinonoid bridging ligand to mediate double-exchange coupling in a mixed-valence Fe2 complex is demonstrated. Metalation of the bridging ligand 2,5-di(2,6-dimethylanilino)-3,6-dibromo-1,4-benzoquinone (LH2) with Fe(II) in the presence of the capping ligand tris((6-methyl-2-pyridyl)methyl)amine (Me3TPyA) affords the dinuclear complex [(Me3TPyA)2Fe(II)2(L)](2+). The dc magnetic measurements, in conjunction with X-ray diffraction and Mössbauer spectroscopy, reveal the presence of weak ferromagnetic superexchange coupling between Fe(II) centers through the diamagnetic bridging ligand to give an S = 4 ground state. The ac magnetic susceptibility measurements, collected in a small dc field, show this complex to behave as a single-molecule magnet with a relaxation barrier of U(eff) = 14(1) cm(-1). The slow magnetic relaxation in the Fe(II)2 complex can be switched off through one-electron oxidation to the mixed-valence congener [(Me3TPyA)2Fe2(L)](3+), where X-ray diffraction and Mössbauer spectroscopy indicate a metal-centered oxidation. The dc magnetic measurements show an S = 9/2 ground state for the mixed-valence complex, stemming from strong ferromagnetic exchange coupling that is best described considering electron hopping through a double-exchange coupling mechanism, with a double-exchange parameter of B = 69(4) cm(-1). In accordance with double-exchange, an intense feature is observed in the near-infrared region and is assigned as an intervalence charge-transfer band. The rate of intervalence electron hopping is comparable to that of the Mössbauer time scale, such that variable-temperature Mössbauer spectra reveal a thermally activated transition from a valence-trapped to detrapped state and provide an activation energy for electron hopping of 63(8) cm(-1). These results demonstrate the ability of quinonoid ligands to mediate electron hopping between high-spin metal centers, by providing the first example of an Fe complex that exhibits double-exchange through an organic bridging ligand and the largest metal-metal separation yet observed in any metal complex with double-exchange coupling.

Entities:  

Year:  2015        PMID: 26375161     DOI: 10.1021/jacs.5b07251

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  4 in total

1.  Tetrairon(II) extended metal atom chains as single-molecule magnets.

Authors:  Alessio Nicolini; Marco Affronte; Daniel J SantaLucia; Marco Borsari; Benjamin Cahier; Matteo Caleffi; Antonio Ranieri; John F Berry; Andrea Cornia
Journal:  Dalton Trans       Date:  2021-06-08       Impact factor: 4.569

2.  Switchable Multiple Spin States in the Kondo description of Doped Molecular Magnets.

Authors:  Rajyavardhan Ray; Sanjeev Kumar
Journal:  Sci Rep       Date:  2017-02-08       Impact factor: 4.379

3.  Transition metal redox switches for reversible "on/off" and "slow/fast" single-molecule magnet behaviour in dysprosium and erbium bis-diamidoferrocene complexes.

Authors:  Courtney M Dickie; Alexander L Laughlin; Joshua D Wofford; Nattamai S Bhuvanesh; Michael Nippe
Journal:  Chem Sci       Date:  2017-10-02       Impact factor: 9.825

4.  Temperature dependence of spherical electron transfer in a nanosized [Fe14] complex.

Authors:  Wei Huang; Shuqi Wu; Xiangwei Gu; Yao Li; Atsushi Okazawa; Norimichi Kojima; Shinya Hayami; Michael L Baker; Peter Bencok; Mariko Noguchi; Yuji Miyazaki; Motohiro Nakano; Takumi Nakanishi; Shinji Kanegawa; Yuji Inagaki; Tatsuya Kawae; Gui-Lin Zhuang; Yoshihito Shiota; Kazunari Yoshizawa; Dayu Wu; Osamu Sato
Journal:  Nat Commun       Date:  2019-12-03       Impact factor: 14.919

  4 in total

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