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Iron-Catalyzed anti-Selective Carbosilylation of Internal Alkynes

机译:铁催化的艾基炔烃的抗选择性碳甲硅烷甲硅烷基化

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摘要

Reported is the anti-selective carbosilylation of internal alkynes with silylborane and alkyl halides using a FeBr2/DPPE catalyst system. The iron catalyst allows simultaneous introduction of a carbon electrophile and a silicon nucleophile to simple internal alkynes, including diaryl-, dialkyl-, and aryl/alkyl-substituted alkynes, in a highly stereoselective manner. Alkyl halides are applicable as the electrophiles, thereby enabling the synthesis of a variety of tetrasubstituted alkenylsilanes. In addition, syn-selective carbosilylation was achieved through stereoswitching, by using a silylborane having oxygen functionality on the silyl group. This novel iron-catalyzed carbosilylation is a useful tool for expedient synthesis of stereodefined multisubstituted olefins, a fundamental structural motif in organic chemistry.
机译:报道的是使用FeBr2 / DPPE催化剂体系与甲硅烷基硼烷和烷基卤化物的内部炔烃的抗选择性碳甲硅烷棒。 铁催化剂允许以高度立体化的方式同时将碳电泳和硅亲核官能和硅式亲核官能和硅亲核官能和硅式亲核试剂引入简单的内部炔烃,包括二芳基,二烷基和芳基/烷基取代的炔烃。 烷基卤化物可用作电子特权,从而能够合成各种四氢烯基硅烷。 此外,通过使用在甲硅烷基上的氧含量在甲硅烷基上使用氧气官能度,通过立体开关来实现同步选择性碳甲硅烷硅烷化。 这种新型铁催化的碳甲硅烷硅烷化是用于有利地合成立体掺杂的多异烯烃的有用工具,是有机化学中的基本结构基质。

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