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首页> 外文期刊>Chemistry - A European Journal >Analysis of Tertiary Phosphanes, Arsanes, and Stibanes as Bridging Ligands in Dinuclear Group 9 Complexes
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Analysis of Tertiary Phosphanes, Arsanes, and Stibanes as Bridging Ligands in Dinuclear Group 9 Complexes

机译:双核9族配合物中作为桥联配体的叔膦,砷烷和环烷的分析

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The unusual bridging and semi-bridging binding mode of tertiary phosphanes, arsanes, and stibanes in dinuclear low-valent Group 9 complexes have been studied by density functional methods and bonding analyses. The influence of various parameters (bridging and terminal ligands, metal atoms) on the structural preferences and bonding of dinuclear complexes of the general composition [A1 M1(μ-CH2)2(μ-EX3)M2 A2] (M1, M2=Co, Rh, Ir; A1, A2=F, Cl, Br, I, κ2-acac; E=P, As, Sb, X=H, F, CH3) has been analyzed. A number of factors have been identified that favor bridging or semi-bridging modes for the phosphane ligands and their homologues. A more symmetrical position of the bridging ligand EX3 is promoted by more polar EX bonding, but by less electronegative (softer) terminal anionic ligands. Among the Group 9 metal elements Co, Rh, and Ir, the computations clearly show that the 4d element rhodium exhibits the largest preference for a {M1(μ-EX3)M2} bridge, in agreement with experimental observation. Iridium complexes should be valid targets, whereas cobalt does not seem to support well a symmetric bridging mode. Analyses of the Electron Localization Function (ELF) indicate a competition between a delocalized three-center bridge bond and direct metal–metal bonding.
机译:通过密度泛函方法和键合分析研究了双核低价9族配合物中叔膦,a烷和七叶烷的不寻常的桥接和半桥接结合方式。各种参数(桥键和末端配体,金属原子)对一般组成[A 1 M 1 (μ-CH)的双核配合物的结构偏好和键合的影响 2 2 (μ-EX 3 )M 2 A 2 ]( M 1 ,M 2 = Co,Rh,Ir; A 1 ,A 2 = F,Cl, Br,I,κ 2 -acac; E = P,As,Sb,X = H,F,CH 3 进行了分析。已经发现许多因素对膦配体及其同系物的桥接或半桥接方式有利。极性更强的EX键可促进桥连配体EX 3 的对称位置,但负电性(柔软)的末端阴离子配体则较少。在第9组金属元素Co,Rh和Ir中,计算清楚地表明,4d元素铑对{M 1 (μ-EX 3 )M 2 }电桥,与实验观察一致。铱配合物应该是有效的靶标,而钴似乎并不能很好地支持对称桥联模式。电子本地化功能(ELF)的分析表明,离域三中心桥键和直接金属-金属键之间存在竞争。

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