Department of Chemistry , University of Illinois at Chicago , 845 West Taylor Street , Chicago , Illinois 60607 , United States.
J Am Chem Soc. 2020 Jan 8;142(1):80-84. doi: 10.1021/jacs.9b12043. Epub 2019 Dec 24.
A Cu-catalyzed carbonylative silylation of unactivated alkyl halides has been developed, enabling efficient synthesis of alkyl-substituted acylsilanes in high yield. A variety of functional groups are tolerated under the mild reaction conditions, and primary, secondary, and tertiary alkyl halides are all applicable. The practical utility of this method has been demonstrated in the synthesis of acylsilanes bearing different silyl groups as well as reduction of a product to the corresponding α-hydroxylsilane in one pot. Mechanistic experiments indicate that a silylcopper intermediate activates alkyl halides by single electron transfer to form alkyl radical intermediates and that carbon-halogen bond cleavage is not involved in the rate-determining step.
一种铜催化的未活化卤代烷烃羰基硅烷化反应已经被开发出来,该反应能够以高产率高效合成烷基取代的酰基硅烷。在温和的反应条件下,各种官能团都能被容忍,并且伯、仲、叔卤代烷烃都适用。该方法的实际应用在具有不同硅基的酰基硅烷的合成以及一锅还原产物得到相应的α-羟基硅烷中得到了证明。机理实验表明,硅基铜中间体通过单电子转移活化卤代烷烃,形成烷基自由基中间体,并且在决速步骤中不涉及碳-卤键断裂。