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Structural criteria for the activity of rhodium(I) phosphine complexes in the catalytic dehydrocoupling of di-n-hexylsilane

机译:二正己基硅烷催化脱氢偶联中铑(I)膦配合物活性的结构标准

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摘要

The activity of several neutral, rhodium(I) bis(phosphine) complexes for the dehydrogenative coupling of di-n-hexylsilane to two- and three-silicon chains was investigated and discussed in the context of the coordination numbers and geometries likely to be critical to catalyst activity. Wilkinson's dimer, [Rh(mu-Cl)(PPh3)(2)](2), shows the highest activity, while [Rh(mu-Cl)(dppe)](2), with its rigidly cis-chelating diphosphine ligand, shows negligible activity for the dehydrocoupling reaction, even when the reaction is carried out in methylene chloride, in which both catalyst and silane are soluble. A dramatic decrease in the activity of Wilkinson's dimer when the reaction is carried out in toluene or methylene chloride solution instead of neat silane is attributed to rate-limiting escape of the product hydrogen gas away from the solvated active catalyst. (c) 2006 Elsevier B.V. All rights reserved.
机译:在配位数和几何形状可能至关重要的情况下,研究和讨论了几种中性铑(I)双(膦)配合物对二正己基硅烷与二硅和三硅链脱氢偶联的活性。催化剂活性。 Wilkinson的二聚体[Rh(mu-Cl)(PPh3)(2)](2)表现出最高的活性,而[Rh(mu-Cl)(dppe)](2)具有严格的顺式螯合二膦配体,即使该反应在催化剂和硅烷均可溶于其中的二氯甲烷中进行,其对脱氢偶联反应的活性可忽略不计。当反应在甲苯或二氯甲烷溶液中而不是在纯硅烷中进行时,威尔金森二聚体的活性急剧下降,这归因于产物氢气从溶剂化活性催化剂中逸出的速率限制。 (c)2006 Elsevier B.V.保留所有权利。

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