Department of Chemistry, Indian Institute of Science Education and Research Bhopal , Bhopal By-pass Road , Bhauri, Bhopal - 462066 , India.
Org Lett. 2018 Apr 6;20(7):1707-1711. doi: 10.1021/acs.orglett.7b03959. Epub 2018 Mar 20.
An enantioselective synthesis of Rauhut-Currier (RC) adducts from 3-aryl cyclohexenone with a tethered enone moiety at the ortho-position on the aryl group is accomplished. This method provides a wide range of valuable synthetic building blocks having a unique [6-5-6] all-carbon-fused tricyclic skeleton. A primary amine-containing thiourea, a bifunctional organocatalyst, was found to be an efficient catalyst for this transformation. The primary amine counterpart of the catalyst possibly activates the aliphatic enone via dienamine formation (HOMO activation), whereas the thiourea counterpart activates the tethered enone (LUMO activation). Considering the difficulty in achieving an RC reaction of β,β-disubstituted (alkyl and aryl) enones, this method would be significantly rewarding.
通过在芳基的邻位上带有缩酮烯酮部分的 3-芳基环己烯酮,实现了对 Rauhut-Currier (RC) 加合物的对映选择性合成。该方法提供了广泛的具有独特 [6-5-6] 全碳稠合三环骨架的有价值的合成砌块。含伯胺的硫脲双功能有机催化剂被发现是该转化的有效催化剂。催化剂的伯胺部分可能通过烯胺形成(HOMO 活化)激活脂肪族烯酮,而硫脲部分则激活缩酮烯酮(LUMO 活化)。考虑到实现β,β-二取代(烷基和芳基)烯酮的 RC 反应的困难,该方法将具有重要意义。