Cui Qi, Tian Zi-You, Yu Zhi-Xiang
Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education, College of Chemistry, Peking University, Beijing, 100871, P. R. China.
Chemistry. 2021 Mar 26;27(18):5638-5641. doi: 10.1002/chem.202005443. Epub 2021 Mar 1.
Transition metal-catalyzed [4+2+1] reactions of dienes (or diene derivatives such as vinylallenes), alkynes/alkenes, and CO (or carbenes) are expected to be the most straightforward approach to synthesize challenging seven-membered ring compounds, but so far only limited successes have been realized. Here, an unexpected three-component [4+2+1] reaction between two vinylallenes and CO was discovered to give highly functionalized tropone derivatives under mild conditions, where one vinylallene acts as a C synthon, the other vinylallene as a C synthon, and CO as a C synthon. It was proposed that this reaction occurred via oxidative cyclization of the diene part of one vinylallene molecule, followed by insertion of the terminal alkene part of the allene moiety in another vinylallene, into the Rh-C bond of five-membered rhodacycle. Then, CO insertion and reductive elimination gave the [4+2+1] cycloadduct. Further experimental exploration of why ene/yne-vinylallenes and CO gave monocyclic tropone derivatives instead of 6/7-bicyclic ring products were reported here.
过渡金属催化的二烯(或二烯衍生物,如乙烯基丙二烯)、炔烃/烯烃与CO(或卡宾)的[4+2+1]反应有望成为合成具有挑战性的七元环化合物最直接的方法,但到目前为止仅取得了有限的成功。在此,发现了一种在温和条件下两个乙烯基丙二烯与CO之间意外的三组分[4+2+1]反应,生成了高度官能化的环庚三烯酮衍生物,其中一个乙烯基丙二烯作为一个C合成子,另一个乙烯基丙二烯作为一个C合成子,CO作为一个C合成子。有人提出该反应通过一个乙烯基丙二烯分子的二烯部分的氧化环化,接着另一个乙烯基丙二烯中丙二烯部分的末端烯烃部分插入五元铑环的Rh-C键而发生。然后,CO插入和还原消除得到[4+2+1]环加成产物。本文报道了关于烯/炔基乙烯基丙二烯与CO为何生成单环环庚三烯酮衍生物而非6/7-双环产物的进一步实验探索。