布朗斯特德-洛瑞酸碱理论
化学
催化作用
分子内力
碳阳离子
组合化学
氢胺化
有机化学
作者
Nobuya Tsuji,Jennifer L. Kennemur,Thomas Buyck,Sunggi Lee,Sébastien Prévost,Philip S. J. Kaib,Dmytro Bykov,Christophe Farès,Benjamin List
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2018-03-29
卷期号:359 (6383): 1501-1505
被引量:204
标识
DOI:10.1126/science.aaq0445
摘要
The activation of olefins for asymmetric chemical synthesis traditionally relies on transition metal catalysts. In contrast, biological enzymes with Brønsted acidic sites of appropriate strength can protonate olefins and thereby generate carbocations that ultimately react to form natural products. Although chemists have recently designed chiral Brønsted acid catalysts to activate imines and carbonyl compounds, mimicking these enzymes to protonate simple olefins that then engage in asymmetric catalytic reactions has remained a substantial synthetic challenge. Here, we show that a class of confined and strong chiral Brønsted acids enables the catalytic asymmetric intramolecular hydroalkoxylation of unbiased olefins. The methodology gives rapid access to biologically active 1,1-disubstituted tetrahydrofurans, including (-)-Boivinianin A.
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