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通过远程配体取代基调节含自由基的铁(III)配合物中的自旋转变

Tuning of spin transition in radical-containing iron(III) complexes by remote ligand substituents.

作者信息

Mukherjee Soumen, Weyhermüller Thomas, Bill Eckhard, Wieghardt Karl, Chaudhuri Phalguni

机构信息

Max-Planck-Institute for Bioinorganic Chemistry, Mülheim an der Ruhr, Germany.

出版信息

Inorg Chem. 2005 Oct 3;44(20):7099-108. doi: 10.1021/ic050885l.

Abstract

Two new iron(III) complexes, Fe(III)(LF*)3 (1) and FeIII(L(t-Bu*))3 (2), of remote substituted o-aminophenol-based ligands are reported; complexes 1 and 2 contain three O,N-coordinated o-iminobenzosemiquinonate(1-) radical anions with ferric centers in high-spin and low-spin configurations. The crystal structures of 1 and 2 were determined by X-ray diffraction at 100 and 293 K, and the electronic structures were established by various physical methods including Mössbauer (4-290 K) and variable-temperature (2-290 K) susceptibility measurements. Electrochemical measurements (cyclic and square-wave voltammetry) indicate primarily ligand-centered redox processes. Complex 1, with the more electron-withdrawing fluoro substituents, retains the high-spin character of the ferric ion throughout the temperature range studied (2-290 K) and exhibits, as expected, strong antiferromagnetic coupling operating between three radicals (SR = 1/2) and the high-spin Fe(III) center (SFe = 5/2) yielding an St = 1 as the ground state. In contrast, the occurrence of a thermally induced spin crossover process (SFe = 5/2 <--> SFe = 1/2) is observed for complex 2 FeIII(L(t-Bu*))3, in which more electron donating tert-butyl substituents in the ligand are present. A rationale for the control of the electronic state of ferric ions in 2 together with spin-coupling schemes for 1 and 2 are provided.

摘要

报道了两种基于邻氨基苯酚的远程取代配体的新型铁(III)配合物,即Fe(III)(LF*)3(1)和FeIII(L(t-Bu*))3(2);配合物1和2包含三个O,N配位的邻亚氨基苯半醌(1-)自由基阴离子,铁中心具有高自旋和低自旋构型。通过在100 K和293 K下的X射线衍射确定了1和2的晶体结构,并通过包括穆斯堡尔谱(4 - 290 K)和变温(2 - 290 K)磁化率测量在内的各种物理方法确定了电子结构。电化学测量(循环伏安法和方波伏安法)表明主要是配体中心的氧化还原过程。配合物1具有吸电子性更强的氟取代基,在整个研究温度范围(2 - 290 K)内保持铁离子的高自旋特征,并且如预期的那样,在三个自由基(SR = 1/2)和高自旋Fe(III)中心(SFe = 5/2)之间表现出强反铁磁耦合,基态为St = 1。相比之下,对于配合物2 FeIII(L(t-Bu*))3,观察到热诱导的自旋交叉过程(SFe = 5/2 <--> SFe = 1/2),其配体中存在供电子性更强的叔丁基取代基。提供了控制2中铁离子电子态的原理以及1和2的自旋耦合方案。

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