Fereyduni Ehsan, Sanders Jacob N, Gonzalez Gabriel, Houk K N, Grenning Alexander J
Department of Chemistry , University of Florida , P.O. Box 117200 , Gainesville , FL 32611 , USA . Email:
Department of Chemistry and Biochemistry , University of California - Los Angeles , 607 Charles E. Young Drive East, Box 951569 , Los Angeles , CA 90095-1569 , USA . Email:
Chem Sci. 2018 Sep 21;9(46):8760-8764. doi: 10.1039/c8sc03057j. eCollection 2018 Dec 14.
A simple and modular route to arylcycloheptene scaffolds is reported. The two-step route from Knoevenagel adducts and allylic electrophiles is made possible through the design of a Cope rearrangement that utilizes a "traceless" activating group to promote an otherwise thermodynamically unfavorable transformation. Experimentally, the [3,3] rearrangement occurrs transiently at room temperature with a computed barrier of 19.5 kcal mol, which ultimately allows for three-component bis-allylation. Ring-closing metathesis delivers the arylcycloheptane and removes the activating group. This report describes the design and optimization of the methodology, scope and mechanistic studies, and computational analysis.
报道了一种合成芳基环庚烯骨架的简单且模块化的方法。通过设计一种科普重排反应,使得从克诺文纳格尔加合物和烯丙基亲电试剂出发的两步法成为可能,该重排反应利用一个“无痕”活化基团来促进原本热力学上不利的转化。实验表明,[3,3]重排在室温下短暂发生,计算得到的能垒为19.5千卡/摩尔,这最终实现了三组分双烯丙基化反应。闭环复分解反应生成芳基环庚烷并除去活化基团。本报告描述了该方法的设计与优化、适用范围和机理研究以及计算分析。