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桥连薁基钴卡宾硼烷。

Supraicosahedral indenyl cobaltacarboranes.

机构信息

Department of Chemistry, Heriot-Watt University, Edinburgh, UK EH14 4AS.

出版信息

Dalton Trans. 2010 Jun 14;39(22):5286-300. doi: 10.1039/c003067h. Epub 2010 May 4.

Abstract

13-vertex indenyl cobaltacarboranes with 4,1,6-, 4,1,10- and 4,1,2-CoC(2)B(10) architectures have been synthesised by reduction of the corresponding closo carborane and metallation with an {(eta-C(9)H(7))Co} fragment. Variants of the 4,1,6-isomer were prepared with no, one and two methyl groups on cage C atoms, whilst 4,1,2-species were obtained both with two methyl groups and a trimethylene tether on the cage C atoms. Thermolysis of the 4,1,6-isomers yielded the corresponding 4,1,8-isomers, which in turn were converted to 4,1,12-isomers by thermolysis at higher temperatures. Alternatively relatively mild heating of the 4,1,10-isomer led to the 4,1,12-isomer directly. Products were characterised by mass spectrometry, (1)H and (11)B NMR spectroscopies and, in most cases, elemental analysis, and nine compounds were studied crystallographically. The 4,1,6-, 4,1,8-, 4,1,10- and 4,1,12- species have docosahedral cages whilst the 4,1,2-species are henicosahedral. In the structural studies attention focused on the orientation of the indenyl ligand with respect to the carborane ligand since this affords experimental information on the metal-cage bonding through the structural indenyl effect. There is a general tendency for the indenyl ligand to adopt orientations in which the ring junction C atoms lie trans to cage B atoms. In cases where the orientation is not compromised by the presence of a non-H substituent on the face of the carborane there is generally good agreement between the experimental orientation and that computed by DFT calculations for the related naphthalene ferracarboranes (eta-C(10)H(8))FeC(2)B(10)H(12). The presence of C-methyl substituents in the indenyl cobaltacarboranes tends to override this preference except in the case of 1,6-Me(2)-4-(eta-C(9)H(7))-4,1,6-closo-CoC(2)B(10)H(10) where the indenyl ligand instead is forced to incline away from the cage methyl groups. In DCM solution the 4,1,6-, 4,1,8-, 4,1,10- and 4,1,12- isomers of (eta-C(9)H(7))CoC(2)B(10)H(12) exhibit two, stepwise, 1-electron reductions assigned to Co(III)/Co(II)/Co(I) couples at less negative potentials than those of the corresponding Cp compounds. Moreover these reductions are easier for those isomers (4,1,6- and 4,1,10-) in which there are two cage C atoms in the carborane face to which the metal atom is bound. By spectroelectrochemical and EPR measurements it is concluded that the reductions of these indenyl cobaltacarboranes are largely metal-based.

摘要

13-顶点茚基钴卡硼烷具有 4,1,6-、4,1,10-和 4,1,2-CoC(2)B(10) 结构,通过相应的闭式碳硼烷的还原和 {(eta-C(9)H(7))Co} 片段的金属化来合成。4,1,6-异构体的变体在笼 C 原子上没有、有一个和两个甲基,而 4,1,2-异构体则在笼 C 原子上既有两个甲基又有一个亚甲基系链。4,1,6-异构体的热解生成相应的 4,1,8-异构体,然后在更高的温度下进一步热解转化为 4,1,12-异构体。或者,4,1,10-异构体的相对温和加热直接导致 4,1,12-异构体的生成。通过质谱、(1)H 和 (11)B NMR 光谱学以及在大多数情况下的元素分析对产物进行了表征,并对九种化合物进行了晶体学研究。4,1,6-、4,1,8-、4,1,10-和 4,1,12- 物种具有二十面体笼,而 4,1,2-物种是十二面体的。在结构研究中,重点关注茚基配体相对于碳硼烷配体的取向,因为这通过结构茚基效应为金属笼键提供了实验信息。茚基配体通常倾向于采用环结 C 原子与笼 B 原子反式的取向。在碳硼烷面上存在非 H 取代基不会影响取向的情况下,实验取向与相关萘基二茂铁碳硼烷((eta-C(10)H(8))FeC(2)B(10)H(12))的 DFT 计算取向通常具有很好的一致性。在茚基钴卡硼烷中存在 C-甲基取代基时,除了 1,6-Me(2)-4-(eta-C(9)H(7))-4,1,6-closo-CoC(2)B(10)H(10) 外,这种偏好通常会被推翻,在该化合物中,茚基配体被迫偏离笼甲基基团。在 DCM 溶液中,(eta-C(9)H(7))CoC(2)B(10)H(12) 的 4,1,6-、4,1,8-、4,1,10-和 4,1,12-异构体表现出两个逐步的 1 电子还原,分配给 Co(III)/Co(II)/Co(I) 偶对,其电位比相应的 Cp 化合物的电位更负。此外,对于那些有两个笼 C 原子与金属原子键合的异构体(4,1,6-和 4,1,10-),这些还原更容易发生。通过光谱电化学和 EPR 测量得出结论,这些茚基钴卡硼烷的还原主要是基于金属的。

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