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同核二膦环丁二烯配合物[M(η(4)-P2C2R2)2]x- (M = Fe, Co; x = 0, 1)。

Homoleptic diphosphacyclobutadiene complexes [M(η(4)-P2C2R2)2]x- (M = Fe, Co; x = 0, 1).

机构信息

Institute of Inorganic and Analytical Chemistry, University of Münster, Corrensstrasse 30, 48149 Münster, Germany.

出版信息

Chemistry. 2010 Dec 27;16(48):14322-34. doi: 10.1002/chem.201001913.

Abstract

The preparation and comprehensive characterization of a series of homoleptic sandwich complexes containing diphosphacyclobutadiene ligands are reported. Compounds [K([18]crown-6)(thf)(2)][Fe(η(4)-P(2)C(2)tBu(2))(2)] (K1), [K([18]crown-6)(thf)(2)][Co(η(4)-P(2)C(2)tBu(2))(2)] (K2), and [K([18]crown-6)(thf)(2)][Co(η(4)-P(2)C(2)Ad(2))(2)] (K3, Ad = adamantyl) were obtained from reactions of [K([18]crown-6)(thf)(2)][M(η(4)-C(14)H(10))(2)] (M = Fe, Co) with tBuC[triple bond]P (1, 2), or with AdC[triple bond]P (3). Neutral sandwiches [M(η(4)-P(2)C(2)tBu(2))(2)] (4: M = Fe 5: M = Co) were obtained by oxidizing 1 and 2 with [Cp(2)Fe]PF(6). Cyclic voltammetry and spectro-electrochemistry indicate that the two M(η(4)-P(2)C(2)tBu(2))(2)/[M(η(4)-P(2)C(2)tBu(2))(2)] moieties can be reversibly interconverted by one electron oxidation and reduction, respectively. Complexes 1-5 were characterized by multinuclear NMR, EPR (1 and 5), UV/Vis, and Mössbauer spectroscopies (1 and 4), mass spectrometry (4 and 5), and microanalysis (1-3). The molecular structures of 1-5 were determined by using X-ray crystallography. Essentially D(2d)-symmetric structures were found for all five complexes, which show the two 1,3-diphosphacyclobutadiene rings in a staggered orientation. Density functional theory calculations revealed the importance of covalent metal-ligand π bonding in 1-5. Possible oxidation state assignments for the metal ions are discussed.

摘要

报道了一系列含有二膦环丁二烯配体的同核夹心配合物的制备和综合表征。化合物 [K([18]冠-6)(thf)(2)][Fe(η(4)-P(2)C(2)tBu(2))(2)] (K1)、[K([18]冠-6)(thf)(2)][Co(η(4)-P(2)C(2)tBu(2))(2)] (K2) 和 [K([18]冠-6)(thf)(2)][Co(η(4)-P(2)C(2)Ad(2))(2)] (K3,Ad = 金刚烷) 是通过反应 [K([18]冠-6)(thf)(2)][M(η(4)-C(14)H(10))(2)] (M = Fe, Co) 与 tBuC[三重键]P (1,2) 或 AdC[三重键]P (3) 制得的。中性夹心配合物 [M(η(4)-P(2)C(2)tBu(2))(2)] (4: M = Fe 5: M = Co) 通过用 [Cp(2)Fe]PF(6)氧化 1 和 2 获得。循环伏安法和光谱电化学表明,两个 M(η(4)-P(2)C(2)tBu(2))(2) / [M(η(4)-P(2)C(2)tBu(2))(2)] 部分可以通过各自的单电子氧化和还原可逆地相互转化。配合物 1-5 采用多核 NMR、EPR (1 和 5)、UV/Vis 和 Mössbauer 光谱学 (1 和 4)、质谱 (4 和 5) 和微量分析 (1-3) 进行了表征。配合物 1-5 的分子结构通过 X 射线晶体学确定。所有五个配合物均呈现出基本的 D(2d)对称结构,其中两个 1,3-二膦环丁二烯环呈交错排列。密度泛函理论计算揭示了 1-5 中金属-配体 π 键合的重要性。讨论了金属离子可能的氧化态赋值。

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