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选用单阳离子响应型铱烯烃异构化催化剂来选择双键位置。

Selecting Double Bond Positions with a Single Cation-Responsive Iridium Olefin Isomerization Catalyst.

机构信息

Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599-3290, United States.

出版信息

J Am Chem Soc. 2021 Feb 24;143(7):2792-2800. doi: 10.1021/jacs.0c11601. Epub 2021 Feb 8.

Abstract

The catalytic transposition of double bonds holds promise as an ideal route to alkenes of value as fragrances, commodity chemicals, and pharmaceuticals; yet, selective access to specific isomers is a challenge, normally requiring independent development of different catalysts for different products. In this work, a single cation-responsive iridium catalyst selectively produces either of two different internal alkene isomers. In the absence of salts, a single positional isomerization of 1-butene derivatives furnishes 2-alkenes with exceptional regioselectivity and stereoselectivity. The same catalyst, in the presence of Na, mediates two positional isomerizations to produce 3-alkenes. The synthesis of new iridium pincer-crown ether catalysts based on an aza-18-crown-6 ether proved instrumental in achieving cation-controlled selectivity. Experimental and computational studies guided the development of a mechanistic model that explains the observed selectivity for various functionalized 1-butenes, providing insight into strategies for catalyst development based on noncovalent modifications.

摘要

双键的催化移位有望成为一种理想的途径,可以获得有价值的烯烃,如香料、大宗商品化学品和药物;然而,选择性地获得特定的异构体是一个挑战,通常需要为不同的产品独立开发不同的催化剂。在这项工作中,一种单一的阳离子响应型铱催化剂可以选择性地生成两种不同的内烯烃异构体中的一种。在没有盐的情况下,1-丁烯衍生物的单一位置异构化以极好的区域选择性和立体选择性生成 2-烯烃。在相同的催化剂中,存在 Na 时,可介导两种位置异构化以生成 3-烯烃。基于氮杂-18-冠-6 醚的新型铱钳形冠醚催化剂的合成在实现阳离子控制的选择性方面非常有效。实验和计算研究指导了一种机械模型的发展,该模型解释了各种功能化 1-丁烯的观察到的选择性,为基于非共价修饰的催化剂开发提供了见解。

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