Wang Jie, Qi Xiaotian, Min Xiao-Long, Yi Wenbin, Liu Peng, He Ying
School of Chemistry and Chemical Engineering, Nanjing University of Science & Technology, Nanjing 210094, China.
Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, United States.
J Am Chem Soc. 2021 Jul 21;143(28):10686-10694. doi: 10.1021/jacs.1c04400. Epub 2021 Jul 6.
Axially chiral styrenes are of great interest since they may serve as a class of novel chiral ligands in asymmetric synthesis. However, only recently have strategies been developed for their enantioselective preparation. Thus, the development of novel and efficient methodologies is highly desirable. Herein, we reported the first tandem iridium catalysis as a general strategy for the synthesis of axially chiral styrenes enabled by () using cinnamyl carbonate analogues as electrophiles and naphthols as nucleophiles. In this approach, axially chiral styrenes were generated through two independent iridium-catalytic cycles: iridium-catalyzed asymmetric allylic substitution and isomerization via stereospecific 1,3-hydride transfer catalyzed by the same iridium catalyst. Both experimental and computational studies demonstrated that the isomerization proceeded by iridium-catalyzed benzylic C-H bond oxidative addition, followed by terminal C-H reductive elimination. Amid the central-to-axial chirality transfer, the hydroxyl of naphthol plays a crucial role in ensuring the stereospecificity by coordinating with the Ir(I) center. The process accommodated broad functional group compatibility. The products were generated in excellent yields with excellent to high enantioselectivities, which could be transformed to various axially chiral molecules.
轴手性苯乙烯类化合物备受关注,因为它们可作为一类新型手性配体用于不对称合成。然而,直到最近才开发出对映选择性制备它们的策略。因此,非常需要开发新颖且高效的方法。在此,我们报道了首例串联铱催化反应,这是一种通用策略,用于以碳酸肉桂酯类似物作为亲电试剂、萘酚作为亲核试剂,通过()合成轴手性苯乙烯类化合物。在该方法中,轴手性苯乙烯类化合物通过两个独立的铱催化循环生成:铱催化的不对称烯丙基取代反应以及由同一铱催化剂催化的经由立体专一性1,3 - 氢转移的异构化反应。实验和计算研究均表明,异构化反应通过铱催化的苄基C - H键氧化加成,随后进行末端C - H还原消除来进行。在中心手性到轴手性的转移过程中,萘酚的羟基通过与Ir(I)中心配位在确保立体专一性方面起着关键作用。该过程具有广泛的官能团兼容性。产物以优异的产率和优异至高的对映选择性生成,并且可以转化为各种轴手性分子。