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关于 C-H 键活化/Cope 重排的协同作用机制和选择性。

On the mechanism and selectivity of the combined C-H activation/Cope rearrangement.

机构信息

Department of Chemistry, Emory University, 1515 Dickey Drive, Atlanta, Georgia 30322, USA.

出版信息

J Am Chem Soc. 2011 Apr 6;133(13):5076-85. doi: 10.1021/ja111408v. Epub 2011 Mar 8.

Abstract

The combined C-H activation/Cope rearrangement (CHCR) is an effective C-H functionalization process that has been used for the asymmetric synthesis of natural products and pharmaceutical building blocks. Up until now, a detailed understanding of this process was lacking. Herein, we describe a combination of theoretical and experimental studies that have resulted in a coherent description of the likely mechanism of the reaction. Density functional studies on the reactions of rhodium vinylcarbenoids at allylic C-H sites demonstrate that the CHCR proceeds through a concerted, but highly asynchronous, hydride-transfer/C-C bond-forming event. Even though most of the previously known examples of this process are highly diastereoselective, the calculations demonstrate that other transition-states and stereochemical outcomes might be possible by appropriate modifications of the reagents, and this was confirmed experimentally. The calculations also indicate that there is a potential energy surface bifurcation between CHCR and the competing direct C-H insertion.

摘要

C-H 键活化/Cope 重排(CHCR)是一种有效的 C-H 官能化过程,已被用于天然产物和药物砌块的不对称合成。到目前为止,人们对这个过程还缺乏详细的了解。在此,我们描述了理论和实验研究的结合,这些研究导致了对反应可能机制的一致描述。在铑乙烯基卡宾在烯丙基 C-H 位置的反应的密度泛函研究中,证明了 CHCR 通过协同但高度异步的氢转移/C-C 键形成事件进行。尽管以前大多数此类过程的实例具有高度的非对映选择性,但计算表明,通过适当修饰试剂,可能存在其他过渡态和立体化学结果,这在实验上得到了证实。该计算还表明,CHCR 和竞争的直接 C-H 插入之间存在潜在的能量表面分岔。

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