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三核铁配合物中的位阻氧化还原反应。

Site-isolated redox reactivity in a trinuclear iron complex.

机构信息

Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford Street, Cambridge, Massachusetts 02138, USA.

出版信息

Inorg Chem. 2012 Oct 1;51(19):10274-8. doi: 10.1021/ic301241s. Epub 2012 Sep 18.

Abstract

The symmetric, high-spin triiron complex ((Ph)L)Fe(3)(THF)(3) reacts with mild chemical oxidants (e.g., Ph(3)C-X, I(2)) to afford an asymmetric core, where one iron bears the halide ligand ((Ph)L)Fe(3)X(L) and the hexadentate ((Ph)L = MeC(CH(2)NPh-o-NPh)(3)) ligand has undergone significant rearrangement. In the absence of a suitable trapping ligand, the chlorine and bromine complexes form (μ-X)(2)-bridged structures of the type ((Ph)L)Fe(3)(μ-X). In the trinuclear complexes, the halide-bearing iron site sits in approximate trigonal-bipyramidal (tbp) geometry, formed by two ((Ph)L) anilides and an exogenous solvent molecule. The two distal iron atoms reside in distorted square-planar sites featuring a short Fe-Fe separation at 2.301 Å, whereas the distance to the tbp site is substantially elongated (2.6-2.7 Å). Zero-field, (57)Fe Mössbauer analysis reveals the diiron unit as the locus of oxidation, while the tbp site bearing the halide ligand remains divalent. Magnetic data acquired for the series reveal that the oxidized diiron unit comprises a strongly coupled S = (3)/(2) unit that is weakly ferromagnetically coupled to the high-spin (S = 2) ferrous site, giving an overall S = (7)/(2) ground state for the trinuclear units.

摘要

对称的高自旋三铁配合物((Ph)L)Fe(3)(THF)(3)与温和的化学氧化剂(例如,Ph(3)C-X,I(2))反应,生成不对称的核心,其中一个铁带有卤化物配体((Ph)L)Fe(3)X(L),并且六配位((Ph)L = MeC(CH(2)NPh-o-NPh)(3))配体发生了显著的重排。在没有合适的捕获配体的情况下,氯和溴配合物形成((Ph)L)Fe(3)(μ-X)类型的μ-X(2)-桥接结构。在三核配合物中,带卤化物的铁位点位于近似三角双锥(tbp)几何形状中,由两个((Ph)L)苯胺和一个外源溶剂分子形成。两个远端铁原子位于扭曲的正方形平面位点,具有 2.301 Å 的短 Fe-Fe 分离,而与 tbp 位点的距离则大大延长(2.6-2.7 Å)。零场(57)Fe Mössbauer 分析表明,二铁单元是氧化的位置,而带有卤化物配体的 tbp 位点仍保持二价。为该系列获得的磁数据表明,氧化的二铁单元包含一个强耦合的 S = (3)/(2)单元,该单元与高自旋(S = 2)亚铁位点弱铁磁耦合,从而使三核单元的总体基态为 S = (7)/(2)。

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