Yang Shao-Qian, Han Ai-Jun, Liu Yang, Tang Xin-Yuan, Lin Guo-Qiang, He Zhi-Tao
CAS Key Laboratory of Synthetic Chemistry of Natural Substances, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Shanghai 200032, China.
School of Chemistry and Materials Science, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310024, China.
J Am Chem Soc. 2023 Feb 10. doi: 10.1021/jacs.2c11843.
The straightforward construction of stereogenic centers bearing unprotected functional groups, as in nature, has been a persistent pursuit in synthetic chemistry. Abundant applications of free enantioenriched allyl alcohol and allyl hydroxylamine motifs have made the asymmetric hydration and hydroaminoxylation of conjugated dienes from water and hydroxylamine, respectively, intriguing and efficient routes that have, however, been unachievable thus far. A fundamental challenge is the failure to realize transition-metal-catalyzed enantioselective C-O bond constructions via hydrofunctionalization of conjugated dienes. Here, we perform a comprehensive study toward the stereoselective formal hydration and hydroaminoxylation of conjugated dienes by synthesizing a set of new P,N-ligands and identifying an aryl-derived oxime as a surrogate for both water and hydroxylamine. Asymmetric hydroalkoxylation with new P,N-ligands is also elucidated. Furthermore, versatile derivatizations following hydration provide indirect but concise routes to formal hydrophenoxylation, hydrofluoroalkoxylation, and hydrocarboxylation of conjugated dienes that have been unreported thus far. Finally, a ligand-to-ligand hydrogen transfer process is proposed based on the results of preliminary mechanistic experiments.
如同在自然界中一样,构建带有未受保护官能团的手性中心一直是合成化学领域长期追求的目标。富含对映体富集的烯丙醇和烯丙基羟胺基序的大量应用,分别使共轭二烯与水和羟胺的不对称水合反应和氢氨氧化反应成为引人关注且高效的途径,然而,迄今为止这些途径仍难以实现。一个根本性的挑战是未能通过共轭二烯的氢官能化反应实现过渡金属催化的对映选择性C-O键构建。在此,我们通过合成一组新的P,N-配体并确定一种芳基衍生的肟作为水和羟胺的替代物,对共轭二烯的立体选择性形式水合反应和氢氨氧化反应进行了全面研究。还阐明了使用新的P,N-配体进行的不对称氢烷氧基化反应。此外,水合反应后的多种衍生化反应为共轭二烯的形式氢苯氧基化反应、氢氟烷氧基化反应和氢羧基化反应提供了间接但简洁的途径,这些反应迄今为止尚未见报道。最后,基于初步机理实验的结果提出了配体间氢转移过程。