Shenzhen Grubbs Institute and Department of Chemistry, Guangdong Provincial Key Laboratory of Catalysis, College of Science, Southern University of Science and Technology, Shenzhen, Guangdong, 518055, China.
J Am Chem Soc. 2023 Jul 5;145(26):14562-14569. doi: 10.1021/jacs.3c05107. Epub 2023 Jun 21.
Catalytic enantioselective construction of optically active tetraarylmethanes remains a challenging issue in the field of asymmetric synthesis because of the overwhelming steric hindrance and formidable stereocontrol that existed in construction of the all-aryl-substituted quaternary carbon stereocenter. Here, we reported an organocatalytic asymmetric synthesis of chiral tetraarylmethanes from racemic tertiary alcohols. With the aid of a chiral phosphoric acid catalyst, 6-methylenenaphthalen-2(6)-ones were generated in situ from 6-(hydroxydiarylmethyl)naphthalen-2-ols, followed by stereoselective 1,8-conjugate addition to afford the corresponding tetraarylmethanes in high to excellent yields with high enantioselectivities. Furthermore, the scope of tertiary alcohols has been successfully enlarged to 6-(hydroxydiphenylmethyl)naphthalen-2-amines. Notably, it is the first time to use 2-naphthol/naphthalen-2-amine unit as the auxiliary group to in situ generate α,β,γ,δ,ε,ζ-conjugate systems, which have been successfully involved in organocatalytic remote stereocontrolled 1,8-conjugate addition reactions. Particularly, organocatalytic stereoconvergent formal nucleophilic substitution reaction of triarylmethanols has been achieved for the asymmetric construction of chiral tetraarylmethanes. In addition, DFT calculations have been applied to provide guidance for the design of additional tertiary alcohols and understand the origin of stereoselectivity.
手性四芳基甲烷的催化对映选择性构建仍然是不对称合成领域的一个具有挑战性的问题,因为在全芳基取代的季碳立体中心的构建中存在压倒性的空间位阻和强大的立体控制。在这里,我们报道了一种从外消旋三级醇不对称合成手性四芳基甲烷的方法。在手性磷酸催化剂的辅助下,6-(二羟二芳基甲基)萘-2-醇原位生成 6-亚甲基萘-2(6)-酮,然后立体选择性地进行 1,8-共轭加成,以高至优异的收率和高对映选择性得到相应的四芳基甲烷。此外,三级醇的范围已成功扩大到 6-(二羟二苯甲基)萘-2-胺。值得注意的是,这是首次使用 2-萘酚/萘-2-胺单元作为辅助基团原位生成α,β,γ,δ,ε,ζ-共轭体系,该体系已成功参与有机催化远程立体控制 1,8-共轭加成反应。特别是,通过三芳基甲醇的有机催化立体收敛性亲核取代反应,实现了手性四芳基甲烷的不对称构建。此外,还应用了 DFT 计算为进一步设计三级醇提供指导,并理解立体选择性的起源。