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195Pt核磁共振化学位移趋势分析作为一种确定新型Pt(IV)-卤代羟基配合物的方法。

195Pt NMR chemical shift trend analysis as a method to assign new Pt(IV)-halohydroxo complexes.

作者信息

Kramer Jurjen, Koch Klaus R

机构信息

Department of Chemistry and Polymer Science, University of Stellenbosch, Private Bag X1, Matieland, 7602 Stellenbosch, South Africa.

出版信息

Inorg Chem. 2007 Sep 3;46(18):7466-76. doi: 10.1021/ic700804t. Epub 2007 Aug 10.

Abstract

A 195Pt NMR spectroscopy study of the speciation of [PtCl6]2-, [PtBr6]2-, and the mixed [PtCl6-mBrm]2- (m=0-6) anions in aqueous medium after hydroxide ion substitution of coordinated halide ions has been carried out under dynamic conditions. Of the 56 possible [PtCl6-m-nBrm(OH)n]2- (m, n=0-6) complex anions in solution under dynamic conditions, the relative chemical shifts delta(195Pt) of 52 observable species have been assigned, 33 of which had not been reported previously. The assignment of all these species including the possible stereoisomers is facilitated by systematic linear relationships between the delta(195Pt) increments resulting from substitutions of the halide ions by OH- ions. Under dynamic conditions, the relative concentration (as indicated by resonance intensities) of the [PtCl6-m-nBrm(OH)n]2- (m, n=0-6) species was found to be largely determined by the trans effects on ligand substitution reactions, leading to the transient appearance of previously unobserved complexes. Only the 2c2c2t and 2t2t2t isomers of the ternary [PtCl2Br2(OH)2]2- complex, the 3m12t [PtCl3Br(OH)2]2- and the 13m2t [PtClBr3(OH)2]2- anions could not be observed under our conditions, although their delta(195Pt) are confidently predictable from the linear trend analysis. This chemical shift trend analysis constitutes a powerful method for the virtually unambiguous assignment of 195Pt chemical shifts for such complex anions undergoing slow ligand exchange on the NMR time scale, as facilitated by the strikingly good correlations of delta(195Pt) for the species as a function of the number of hydroxide ions in the coordination sphere.

摘要

在动态条件下,进行了一项关于[PtCl₆]²⁻、[PtBr₆]²⁻以及混合的[PtCl₆₋ₘBrₘ]²⁻(m = 0 - 6)阴离子在水介质中经配位卤离子被氢氧根离子取代后的形态的¹⁹⁵Pt核磁共振光谱研究。在动态条件下溶液中56种可能的[PtCl₆₋ₘ₋ₙBrₘ(OH)ₙ]²⁻(m, n = 0 - 6)络合阴离子中,已确定了52种可观测物种的相对化学位移δ(¹⁹⁵Pt),其中33种此前尚未见报道。卤离子被OH⁻离子取代所导致的δ(¹⁹⁵Pt)增量之间的系统线性关系有助于对所有这些物种(包括可能的立体异构体)进行归属。在动态条件下,发现[PtCl₆₋ₘ₋ₙBrₘ(OH)ₙ]²⁻(m, n = 0 - 6)物种的相对浓度(由共振强度表示)在很大程度上由配体取代反应的反位效应决定,导致出现了之前未观测到的络合物的短暂出现。在我们的条件下,仅三元[PtCl₂Br₂(OH)₂]²⁻络合物的2c2c2t和2t2t2t异构体、3m12t [PtCl₃Br(OH)₂]²⁻和13m2t [PtClBr₃(OH)₂]²⁻阴离子未被观测到,尽管根据线性趋势分析它们的δ(¹⁹⁵Pt)是可以可靠预测的。这种化学位移趋势分析构成了一种强大的方法,用于在核磁共振时间尺度上对经历缓慢配体交换的此类络合阴离子的¹⁹⁵Pt化学位移进行几乎明确的归属,这得益于物种的δ(¹⁹⁵Pt)与配位球中氢氧根离子数量之间显著良好的相关性。

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