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双(二烷基膦基)甲烷配合物 Pd2X2(μ-R2PCH2PR2)2(X = 卤素,R = Me 或 Et)与 H2S、S8、COS 和 CS2 的反应;检测反应中间体。

Reactions of the bis(dialkylphosphino)methane complexes Pd2X2(μ-R2PCH2PR2)2 (X = halogen, R = Me or Et) with H2S, S8, COS, and CS2; detection of reaction intermediates.

机构信息

Department of Chemistry, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z1.

出版信息

Inorg Chem. 2011 Sep 5;50(17):8094-105. doi: 10.1021/ic200503d. Epub 2011 Jul 22.

Abstract

The Pd(2)X(2)(dmpm)(2) complexes [X = Cl (1a), Br (1b), I (1c); dmpm = bis(dimethylphosphino)methane. In all the dipalladium complexes mentioned in this paper, the dmpm, depm, and dppm ligands (unless stated otherwise) are bridging, but for convenience the μ-symbol is omitted.] react with H(2)S to yield H(2) and the bridged-sulfido complexes Pd(2)X(2)(μ-S)(dmpm)(2) (2a-c), of which 2a and 2b are structurally characterized. With 1a, two rapid reversible equilibria are observed by NMR spectroscopy below -30 °C, and two reaction intermediates are detected; both are likely hydrido(mercapto) species. Reaction of 1a with 1 equiv of elemental sulfur also yields 2a. The reaction of 1a with COS results in the initial formation of Pd(2)Cl(2)(μ-COS)(dmpm)(2) (3) that undergoes decarbonylation to yield 2a and Pd(2)Cl(2)(μ-CO)(dmpm)(2) (4), which is also formed via reversible insertion of the CO into the Pd-Pd bond of 1a. The solid-state molecular structure of the previously reported complex Pd(2)Cl(2)(μ-CS(2))(dmpm)(2) (5), together with solution NMR data for 3 and 5, reveal that the bridging heterocumulene ligands coordinate in an η(2)-C,S fashion. Analogous findings were made for the corresponding Pd(2)X(2)(depm)(2) complexes [X = Cl (1a'), Br (1b'), I (1c'); depm = bis(diethylphosphino)methane], although no μ-COS species was detected. The Pd(2)X(2)(μ-S)(depm)(2) complex was structurally characterized. Differences in the chemistry of the previously studied, corresponding dppm systems (dppm = bis(diphenylphosphino)methane) are discussed.

摘要

钯(2)X(2)(dmpm)(2)配合物[X = Cl (1a),Br (1b),I (1c);dmpm = 双(二甲基膦基)甲烷。在本文提到的所有二钯配合物中,除非另有说明,否则 dmpm、depm 和 dppm 配体都是桥连的,但为了方便起见,省略了μ符号。]与 H(2)S 反应生成 H(2)和桥连的硫代配合物 Pd(2)X(2)(μ-S)(dmpm)(2)(2a-c),其中 2a 和 2b 进行了结构表征。用 1a 在低于-30°C 的温度下通过 NMR 光谱观察到两个快速可逆平衡,并检测到两个反应中间体;两者可能都是氢(硫代)物种。1a 与 1 当量的元素硫反应也生成 2a。1a 与 COS 的反应最初生成 Pd(2)Cl(2)(μ-COS)(dmpm)(2)(3),它经历脱羰反应生成 2a 和 Pd(2)Cl(2)(μ-CO)(dmpm)(2)(4),4 也是通过 1a 中 Pd-Pd 键的可逆插入 CO 形成的。先前报道的配合物 Pd(2)Cl(2)(μ-CS(2))(dmpm)(2)(5)的固态分子结构以及 3 和 5 的溶液 NMR 数据表明,桥连的杂cumulene 配体以η(2)-C,S 方式配位。对于相应的 Pd(2)X(2)(depm)(2)配合物[X = Cl (1a'),Br (1b'),I (1c');depm = 双(二乙基膦基)甲烷]也有类似的发现,尽管没有检测到μ-COS 物种。Pd(2)X(2)(μ-S)(depm)(2)配合物进行了结构表征。讨论了先前研究的、相应的 dppm 体系(dppm = 双(二苯基膦基)甲烷)化学性质的差异。

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