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H-X(X = H、Si、B和C)键的异裂活化:一项实验与理论研究。

Heterolytic activation of H-X (X = H, Si, B, and C) bonds: an experimental and theoretical investigation.

作者信息

Nagaraja C M, Parameswaran Pattiyil, Jemmis Eluvathingal D, Jagirdar Balaji R

机构信息

Department of Inorganic & Physical Chemistry, Indian Institute of Science, Bangalore, India.

出版信息

J Am Chem Soc. 2007 May 2;129(17):5587-96. doi: 10.1021/ja069044j. Epub 2007 Apr 7.

Abstract

The highly electrophilic, coordinatively unsaturated, 16-electron [Ru(P(OH)3)(dppe)2][OTf]2 (dppe = Ph2PCH2CH2PPh2) complex 1 activates the H-H, the Si-H, and the B-H bonds, in H2(g), EtMe2SiH and Et3SiH, and H3B.L (L = PMe3, PPh3), respectively, in a heterolytic fashion. The heterolysis of H2 involves an eta2-H2 complex (observable at low temperatures), whereas the computations indicate that those of the Si-H and the B-H bonds proceed through unobserved eta1-species. The common ruthenium-containing product in these reactions is trans-[Ru(H)(P(OH)3)(dppe)2][OTf], 2. The [Ru(P(OH)3)(dppe)2][OTf]2 complex is unique with regard to activating the H-H, the Si-H, and the B-H bonds in a heterolytic manner. These reactions and the heterolytic activation of the C-H bond in methane by the model complex [Ru(POH)3)(H2PCH2CH2PH2)2][Cl][OTf], 4, have been investigated using computational methods as well, at the B3LYP/LANL2DZ level. While the model complex activates the H-H, the Si-H, and the B-H bonds in H2, SiH4, and H3B.L (L = PMe3, PPh3), respectively, with a low barrier, activation of the C-H bond in CH4 involves a transition state of 57.5 kcal/mol high in energy. The inability of the ruthenium complex to activate CH4 is due to the undue stretching of the C-H bond needed at the transition state, in comparison to the other substrates.

摘要

高亲电、配位不饱和的16电子配合物[Ru(P(OH)3)(dppe)2][OTf]2(dppe = Ph2PCH2CH2PPh2),即配合物1,分别以异裂方式活化H2(g)、EtMe2SiH和Et3SiH中的H-H键、Si-H键以及H3B·L(L = PMe3、PPh3)中的B-H键。H2的异裂涉及一个η2-H2配合物(在低温下可观测到),而计算结果表明,Si-H键和B-H键的异裂是通过未观测到的η1-物种进行的。这些反应中常见的含钌产物是反式-[Ru(H)(P(OH)3)(dppe)2][OTf],即配合物2。[Ru(P(OH)3)(dppe)2][OTf]2配合物在以异裂方式活化H-H键、Si-H键和B-H键方面具有独特性。还使用计算方法在B3LYP/LANL2DZ水平上研究了这些反应以及模型配合物[Ru(POH)3)(H2PCH2CH2PH2)2][Cl][OTf],即配合物4对甲烷中C-H键的异裂活化。虽然该模型配合物分别以较低的势垒活化H2、SiH4和H3B·L(L = PMe3、PPh3)中的H-H键、Si-H键和B-H键,但活化CH4中的C-H键涉及一个能量高达57.5 kcal/mol的过渡态。与其他底物相比,钌配合物无法活化CH4是由于过渡态所需的C-H键过度拉伸。

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