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配体拓扑结构变化以及配体场强度在非血红素铁催化的烷烃氧化反应中的重要性。

Ligand topology variations and the importance of ligand field strength in non-heme iron catalyzed oxidations of alkanes.

作者信息

England Jason, Britovsek George J P, Rabadia Nitin, White Andrew J P

机构信息

Department of Chemistry, Imperial College London, Exhibition Road, London, SW7 2AY, United Kingdom.

出版信息

Inorg Chem. 2007 Apr 30;46(9):3752-67. doi: 10.1021/ic070062r. Epub 2007 Apr 6.

Abstract

A series of iron(II)-bis(triflate) complexes [Fe(L)(OTf)2] containing linear tetradentate bis(quinolyl)-diamine and bis(quinolylmethyl)-diamine ligands with a range of ligand backbones has been prepared. The coordination geometries of these complexes have been investigated in the solid state by X-ray crystallography and in solution by 1H and 19F NMR spectroscopy. Because of the labile nature of high-spin iron(II) complexes in solution, dynamic equilibria of complexes with different coordination geometries (cis-alpha, cis-beta, and trans) are observed with certain ligand systems. In these cases, the geometry observed in the solid-state does not necessarily represent the only or even the major geometry present in solution. The ligand field strength in the various complexes has been investigated by variable-temperature (VT) magnetic moment measurements and by UV-vis spectroscopy. The strongest ligand field is observed with the most rigid ligand that generates [Fe(L)(OTf)2] complexes with a cis-alpha coordination geometry, and the corresponding [Fe(L)(CH3CN)2]2+ complex displays spin crossover behavior. The catalytic properties of the complexes for the oxidation of cyclohexane have been investigated using hydrogen peroxide as the oxidant. An increased flexibility in the ligand results in a weaker ligand field, which increases the lability of the complexes. The activity and selectivity of the catalysts appear to be related to the strength of the ligand field and the stability of the catalyst.

摘要

已制备了一系列含有线性四齿双(喹啉基)-二胺和双(喹啉基甲基)-二胺配体且具有一系列配体主链的铁(II)-双(三氟甲磺酸盐)配合物[Fe(L)(OTf)₂]。通过X射线晶体学在固态下以及通过¹H和¹⁹F NMR光谱在溶液中研究了这些配合物的配位几何结构。由于溶液中高自旋铁(II)配合物的不稳定性质,在某些配体体系中观察到具有不同配位几何结构(顺式-α、顺式-β和反式)的配合物的动态平衡。在这些情况下,固态中观察到的几何结构不一定代表溶液中存在的唯一几何结构,甚至不一定是主要几何结构。通过变温(VT)磁矩测量和紫外可见光谱研究了各种配合物中的配体场强度。在生成具有顺式-α配位几何结构的[Fe(L)(OTf)₂]配合物的最刚性配体中观察到最强的配体场,并且相应的[Fe(L)(CH₃CN)₂]²⁺配合物表现出自旋交叉行为。使用过氧化氢作为氧化剂研究了这些配合物对环己烷氧化的催化性能。配体中增加的柔韧性导致较弱的配体场,这增加了配合物的不稳定性。催化剂的活性和选择性似乎与配体场的强度和催化剂的稳定性有关。

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