Institut für Organische Chemie, Albert-Ludwigs-Universität Freiburg, Albertstraße 21, Freiburg im Breisgau 79104, Germany.
Engineering Research Center of Pharmaceutical Process Chemistry, Ministry of Education; School of Pharmacy, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, P. R. China.
Chem Commun (Camb). 2023 Feb 16;59(15):2122-2125. doi: 10.1039/d2cc06972e.
A visible-light-induced, intramolecular, reductive cyclisation of ketones with an unsaturated hydrocarbon moiety was developed. In contrast to conventional protocols requiring resource precious or hazardous metal sources, this method enables facile access to ketyl radicals under metal-free and mild reaction conditions. By polarity-reversed, ketyl radical hydroalkoxylation of alkynes and allenes, a variety of five-membered (hetero-)cyclic products were generated in good yields with good to excellent stereoselectivities. The embedded homoallylic tertiary alcohol could be transformed into other useful functionalities, highlighting the synthetic utility of this reaction. This efficient and sustainable ketyl-alkyne/allene cross coupling also features broad functional group tolerance and scalability.
发展了一种酮与不饱和烃部分的可见光诱导、分子内、还原环化反应。与传统需要资源宝贵或危险金属源的方案不同,该方法在无金属和温和反应条件下能够容易地获得酮自由基。通过极性反转,炔烃和丙二烯的酮基自由基氢烷氧基化,以良好到优异的立体选择性生成了多种五元(杂)环产物。嵌入的偕丙基叔醇可以转化为其他有用的官能团,突出了该反应的合成实用性。这种高效和可持续的酮-炔烃/丙二烯交叉偶联还具有广泛的官能团容忍度和可扩展性。