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拓展氧钼(VI)催化剂的作用:X-H 活化导致还原或氧化的 DFT 解释。

Expanding the role of oxo-molybdenum(VI) catalysts: a DFT interpretation of X-H activation leading to reduction or oxidation.

机构信息

Departamento de Química e Bioquímica, CQB, Faculdade de Ciências, Universidade de Lisboa, 1749-016 Lisboa, Portugal.

出版信息

Dalton Trans. 2009 Oct 21(39):8155-61. doi: 10.1039/b910207h. Epub 2009 Aug 5.

Abstract

Organometallic complexes of transition metals in high oxidation states, namely Re(v) and Mo(vi), have been shown experimentally to catalyze a variety of reduction reactions, such as hydrosilylation of ketones, alkyne hydrogenation, sulfoxide reduction (deoxygenation), etc, often under mild conditions and with high yields and selectivity. These recently found reactions apparently contrast with the traditional oxidation of alkenes in the presence of an oxygen source. We describe a series of DFT calculations, showing that most X-H bonds are activated by [MoO(2)Cl(2)], forming a hydride complex, which is the catalytic active species in catalysis. This occurs by a [2 + 2] addition of the X-H bond to the Mo[double bond, length as m-dash]O bond of the Mo(vi) complex. While hydrosilylation is particularly effective, hydrogenation is deactivated in many systems by the reduction of the catalyst, rather than the substrate, to a stable Mo(iv) complex, and P-H activation in HP(O)(OR)(2) molecules takes place through a different route. The activation of O-H from HOOR differs significantly, since the high electronegativity of oxygen results in an "inverse" addition with formation of OH and a complex of OOR.

摘要

过渡金属的高氧化态的有机金属配合物,如 Re(v) 和 Mo(vi),已在实验中证明可以催化多种还原反应,如酮的硅氢化、炔烃加氢、亚砜还原(脱氧)等,通常在温和条件下,具有高产率和选择性。这些最近发现的反应显然与传统的在含氧源存在下的烯烃氧化反应形成对比。我们描述了一系列的 DFT 计算,表明大多数 X-H 键被[MoO(2)Cl(2)]激活,形成氢化物配合物,这是催化反应中的催化活性物种。这是通过 X-H 键与 Mo(vi)配合物的 Mo[双键,长度为 m-dash]O 键的[2 + 2]加成来实现的。虽然硅氢化特别有效,但在许多体系中,由于催化剂而不是底物还原为稳定的 Mo(iv)配合物,导致加氢反应失活,并且在 HP(O)(OR)(2)分子中 P-H 的活化通过不同的途径发生。HOOR 中 O-H 的活化有显著差异,因为氧的高电负性导致“反向”加成,形成 OH 和 OOR 的配合物。

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