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首页> 外文期刊>Inorganica Chimica Acta >Quantifying the electronic cis effect of phosphine, arsine and stibine ligands by use of rhodium(I) Vaska-type complexes
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Quantifying the electronic cis effect of phosphine, arsine and stibine ligands by use of rhodium(I) Vaska-type complexes

机译:通过使用铑(I)Vaska型复合物定量分析膦,rs和锑的配体的电子顺式作用

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The cis effects of phosphine, arsine and stibine ligands have been evaluated by measuring the IR stretching frequency in dichloromethane of the carbonyl ligand in a series of Rh(I) Vaska-type complexes, trans-[RhCl(CO)(L)(2)]. These data were correlated with those obtained by Tolman for the electronic trans influences in the [Ni(L)(CO)(3)] complexes. The electronic contribution, chi(Fe), of ferrocenyl was determined as 0.8 from these plots by evaluating PPh(2)Fc as ligand. In order to accommodate arsine and stibine ligands an additional correction term, to compensate for differences in the donor atom, was added to Tolman's equation for calculation of the Tolman electronic parameter of phosphine ligands. In the resulting equation: nu(CONi) = 2056.1 + Sigma(i=1)(3) chi(i) + C-L values for C-L of C-P = 0, C-As = -1.5 and C-Sb = -3.1 are suggested for phosphine, arsine and stibine ligands, respectively. The crystal and molecular structures of trans-[RhCl(CO)(PPh(2)Fc)(2)](.)2C(6)H(6), trans-[RhCl(CO){P(NMe2)(3)}(2)] and trans-[RhCl(CO)(AsPh3)(2)] are reported. The Tolman cone angles for PPh(2)Fc and P(NMe2)(3) were determined as 169degrees and 166degrees, while the effective cone angles for PPh(2)Fc, P(NMe2)(3) and AsPh3 were determined as 171degrees, 168degrees and 147degrees, respectively. (C) 2003 Elsevier B.V. All rights reserved. [References: 42]
机译:通过测量一系列Rh(I)Vaska型配合物反式[RhCl(CO)(L)(2)中羰基配体在二氯甲烷中的IR拉伸频率,可以评估膦,a和st丁配体的顺式作用)]。这些数据与Tolman在[Ni(L)(CO)(3)]配合物中的电子反式影响相关。通过评估PPh(2)Fc作为配体,从这些图中将二茂铁基的电子贡献chi(Fe)确定为0.8。为了适应砷化氢和锑化氢的配体,为了补偿膦配体的托尔曼电子参数,将一个附加的校正项(用于补偿供体原子的差异)添加到托尔曼方程中。在得出的方程式中:nu(CONi)= 2056.1 + Sigma(i = 1)(3)chi(i)+ CL的CL值为CP = 0,C-As = -1.5和C-Sb = -3.1分别用于膦,a和锑的配体。反式-[RhCl(CO)(PPh(2)Fc)(2)](。)2C(6)H(6),反式-[RhCl(CO){P(NMe2)(3) )}(2)]和反式-[RhCl(CO)(AsPh3)(2)]。 PPh(2)Fc和P(NMe2)(3)的托尔曼锥角确定为169度和166度,而PPh(2)Fc,P(NMe2)(3)和AsPh3的有效锥角确定为171度分别为168度和147度。 (C)2003 Elsevier B.V.保留所有权利。 [参考:42]

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