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双亲和性二膦硼烷配体:铑、铂和钯等电子配合物中的金属→硼烷相互作用

Ambiphilic diphosphine-borane ligands: metal-->borane interactions within isoelectronic complexes of rhodium, platinum and palladium.

作者信息

Bontemps Sébastien, Sircoglou Marie, Bouhadir Ghenwa, Puschmann Horst, Howard Judith A K, Dyer Philip W, Miqueu Karinne, Bourissou Didier

机构信息

Laboratoire Hétérochimie Fondamentale et Appliquée du CNRS UMR 5069, Equipe Ligands Bifonctionnels et Polymères, Biodégradables, Université Paul Sabatier, 118 route de Narbonne, 31062 Toulouse Cedex 09, France.

出版信息

Chemistry. 2008;14(2):731-40. doi: 10.1002/chem.200701027.

Abstract

Coordination of an ambiphilic diphosphine-borane (DPB) ligand to the RhCl(CO) fragment affords two isomeric complexes. According to X-ray diffraction analysis, each complex adopts a square-pyramidal geometry with trans coordination of the two phosphine buttresses and axial RhB contacts, but the two differ in the relative orientations around the rhodium and boron centres. DFT calculations on the actual complexes provide insight into the influence of the pi-accepting CO co-ligand, compared with previously reported complexes [Rh(mu-Cl)(dpb)]2 and [RhCl(dmap)(dpb)]. In addition, comparison of the nu(CO) frequency of [RhCl(CO)(dpb)] with that of the related borane-free complex [RhCl(CO)(iPr2PPh)2] substantiates the significant electron-withdrawing effect that the sigma-accepting borane moiety exerts on the metal. Valence isoelectronic [PtCl2(dpb)] and [PdCl2(dpb)] complexes have also been prepared and characterized spectroscopically and structurally. The pronounced influence of the transition metal on the magnitude of the M-->B interaction is highlighted by geometric considerations and NBO analyses.

摘要

亲双性二膦硼烷(DPB)配体与RhCl(CO)片段配位得到两种异构体配合物。根据X射线衍射分析,每个配合物都采用四方锥几何构型,两个膦支链呈反式配位且有轴向RhB接触,但两者在铑和硼中心周围的相对取向上有所不同。与之前报道的配合物[Rh(μ-Cl)(dpb)]2和[RhCl(dmap)(dpb)]相比,对实际配合物进行的密度泛函理论(DFT)计算揭示了π-接受性CO共配体的影响。此外,将[RhCl(CO)(dpb)]的ν(CO)频率与相关的无硼烷配合物[RhCl(CO)(iPr2PPh)2]的ν(CO)频率进行比较,证实了σ-接受性硼硼烷部分对金属产生的显著吸电子效应。还制备了价电子等排体[PtCl2(dpb)]和[PdCl2(dpb)]配合物,并通过光谱和结构表征。几何考量和自然键轨道(NBO)分析突出了过渡金属对M→B相互作用强度的显著影响。

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