Xiao Yuanjiu, Tang Lei, Xu Tong-Tong, Sheng Jiang-Yi-Hui, Zhou Zhongyan, Yue Lei, Wang Guoqiang, Oestreich Martin, Feng Jian-Jun
State Key Laboratory of Chemo/Biosensing and Chemometrics, Advanced Catalytic Engineering Research Center of the Ministry of Education, College of Chemistry and Chemical Engineering, Hunan University Changsha Hunan 410082 P. R. China
College of Biology, Mass Spectrometry Lab of Bio-Chemistry, Hunan University P. R. China.
Chem Sci. 2023 Apr 26;14(21):5608-5618. doi: 10.1039/d3sc01394d. eCollection 2023 May 31.
Carboacyloxylation of internal alkynes is emerging as a powerful and straightforward strategy for enol ester synthesis. However, the reported examples come with limitations, including the utilization of noble metal catalysts, the control of regio- and / selectivity, and an application in the synthesis of enol carbonates. Herein, a boron Lewis acid-catalyzed intermolecular carboacyloxylation of ynamides with esters to access fully substituted acyclic enol esters in high yield with generally high / selectivity (up to >96 : 4) is reported. Most importantly, readily available allylic carbonates are also compatible with this difunctionalization reaction, representing an atom-economic, catalytic and stereoselective protocol for the construction of acyclic β,β-disubstituted enol carbonates of amides for the first time. The application of the carboacyloxylation products to decarboxylative allylations provided a ready access to enantioenriched α-quaternary amides. Moreover, experimental studies and theoretical calculations were performed to illustrate the reaction mechanism and rationalize the stereochemistry.
内炔烃的碳酰氧基化反应正在成为一种用于烯醇酯合成的强大且直接的策略。然而,已报道的实例存在局限性,包括使用贵金属催化剂、区域和/或选择性的控制以及在烯醇碳酸酯合成中的应用。在此,报道了一种硼路易斯酸催化的炔酰胺与酯的分子间碳酰氧基化反应,以高产率和通常较高的区域选择性(高达>96:4)获得完全取代的无环烯醇酯。最重要的是,易于获得的烯丙基碳酸酯也与这种双官能化反应兼容,首次代表了一种原子经济、催化且立体选择性的方法来构建酰胺的无环β,β-二取代烯醇碳酸酯。碳酰氧基化产物在脱羧烯丙基化反应中的应用为获得对映体富集的α-季铵酰胺提供了一条便捷途径。此外,还进行了实验研究和理论计算以阐明反应机理并合理化立体化学。