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通过将钨插入无应变芳环来裂解碳-碳键。

Cleaving carbon-carbon bonds by inserting tungsten into unstrained aromatic rings.

机构信息

Department of Chemistry, Columbia University, New York, New York 10027, USA.

出版信息

Nature. 2010 Jan 28;463(7280):523-6. doi: 10.1038/nature08730.

Abstract

The cleavage of C-H and C-C bonds by transition metal centres is of fundamental interest and plays an important role in the synthesis of complex organic molecules from petroleum feedstocks. But while there are many examples for the oxidative addition of C-H bonds to a metal centre, transformations that feature oxidative addition of C-C bonds are rare. The paucity of transformations that involve the cleavage of C-C rather than C-H bonds is usually attributed to kinetic factors arising from the greater steric hindrance and the directional nature of the sp(n) hybrids that form the C-C bond, and to thermodynamic factors arising from the fact that M-C bonds are weaker than M-H bonds. Not surprisingly, therefore, most examples of C-C bond cleavage either avoid the kinetic limitations by using metal compounds in which the C-C bond is held in close proximity to the metal centre, or avoid the thermodynamic limitations by using organic substrates in which the cleavage is accompanied by either a relief of strain energy or the formation of an aromatic system. Here, we show that a tungsten centre can be used to cleave a strong C-C bond that is a component of an unstrained 6-membered aromatic ring. The cleavage is enabled by the formation of an unusual chelating di(isocyanide) ligand, which suggests that other metal centres with suitable ancillary ligands could also accomplish the cleavage of strong C-C bonds of aromatic substrates and thereby provide new ways of functionalizing such molecules.

摘要

过渡金属中心促进的 C-H 和 C-C 键的断裂具有重要的理论意义,在从石油原料合成复杂有机分子的过程中扮演着重要的角色。尽管有很多 C-H 键加成到金属中心的氧化加成的例子,但涉及 C-C 键氧化加成的转化却很少。涉及 C-C 键而不是 C-H 键断裂的转化很少,这通常归因于动力学因素,即形成 C-C 键的 sp(n)杂化的空间位阻较大和方向性,以及热力学因素,即 M-C 键比 M-H 键弱。因此,大多数 C-C 键断裂的例子要么通过使用将 C-C 键紧密靠近金属中心的金属化合物来避免动力学限制,要么通过使用有机底物来避免热力学限制,在这些有机底物中,断裂伴随着应变能的释放或芳构化体系的形成。在这里,我们表明,一个钨中心可以用来断裂一个强的 C-C 键,该键是一个未受应变的六元芳环的组成部分。通过形成一种不寻常的螯合二(异氰化物)配体,实现了这种断裂,这表明其他具有合适辅助配体的金属中心也可以实现芳基底物的强 C-C 键的断裂,从而为功能化此类分子提供了新途径。

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