化学
对映选择合成
胺化
区域选择性
分子内力
组合化学
催化作用
激进的
有机化学
作者
Kohki M. Nakafuku,Zuxiao Zhang,Ethan A. Wappes,Leah M. Stateman,Andrew D. Chen,David A. Nagib
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2020-06-22
卷期号:12 (8): 697-704
被引量:150
标识
DOI:10.1038/s41557-020-0482-8
摘要
Asymmetric, radical C–H functionalizations are rare but powerful tools for solving modern synthetic challenges. Specifically, the enantio- and regioselective C–H amination of alcohols to access medicinally valuable chiral β-amino alcohols remains elusive. To solve this challenge, a radical relay chaperone strategy was designed, wherein an alcohol was transiently converted to an imidate radical that underwent intramolecular H-atom transfer (HAT). This regioselective HAT was also rendered enantioselective by harnessing energy transfer catalysis to mediate selective radical generation and interception by a chiral copper catalyst. The successful development of this multi-catalytic, asymmetric, radical C–H amination enabled broad access to chiral β-amino alcohols from a variety of alcohols containing alkyl, allyl, benzyl and propargyl C–H bonds. Mechanistic experiments revealed that triplet energy sensitization of a Cu-bound radical precursor facilitates catalyst-mediated HAT stereoselectivity, enabling the synthesis of several important classes of chiral β-amines by enantioselective, radical C–H amination. The synthesis of chiral amino alcohols from simple alcohol starting materials can be achieved through a catalytic, asymmetric radical relay. Multiple catalysts work in concert to harness a H-atom transfer mechanism to enable enantio- and regioselective C–H amination by transient N-centred radicals.
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