首页> 美国政府科技报告 >Organotransition-Metal Metallacarboranes. 15.(1) Regiospecific B-Alkylation of (arene)M(Et2C2B3H5) (M = Fe, Ru) and (C5Me5)Co(Et2C2B3H5) Sandwich Complexes.
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Organotransition-Metal Metallacarboranes. 15.(1) Regiospecific B-Alkylation of (arene)M(Et2C2B3H5) (M = Fe, Ru) and (C5Me5)Co(Et2C2B3H5) Sandwich Complexes.

机译:有机过渡 - 金属金属碳硼烷。 15.(1)(芳烃)m(Et2C2B3H5)(m = Fe,Ru)和(C5me5)Co(Et2C2B3H5)夹心配合物的区域特异性B-烷基化。

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摘要

The controlled introduction of hydrocarbon substituents onto specific boron locations in nido-metallacarborane complexes of the title classes has been achieved via bridge deprotonation followed by reaction with alkyl or arylalkyl halides. The monodeprotonated complex anions react with MeI, EtBr, pMeC6H4CH2Br, or p-BrCH2C6H4CH2Br in THF to generate exclusively the B(5)-substituted derivative in each case. This pattern differs strikingly from the corresponding reactions of nido-R2C2B4H5-carborane anions, which had been shown in an earlier study to give the B(4)-(and equivalent B(4)-(and equivalent B(6)-) alkylated products with 99% regiospecificity. In the present work, the B(5)-methyl complexes of Fe, Ru, and Co were each further alkylated via deprotonation/alkyl halide treatments, to give successively the B(4,5)-dimethyl and b(4,5,6)-trimethyl derivatives as desired. The alkylated products were isolated in generally high yields; for the three compound classes studied, the B-monomethyl complexes are extremely air-stable, but the sensitivity to air increases on further alkylation. Keywords: Borane, Carborane, Metallacarborane, Organotransition-metal. (JES)

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