Yang Xue-Chun, Wu Feng, Wu Wen-Biao, Zhang Xu, 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
School of Chemistry & Chemical Engineering, Yangzhou University Yangzhou 225002 P. R. China.
Chem Sci. 2024 Nov 8;15(46):19488-19495. doi: 10.1039/d4sc06334a. eCollection 2024 Nov 27.
Although cycloadditions of bicyclobutanes (BCBs) have emerged as a reliable approach for producing bicyclo[.1.1]alkanes such as azabicyclo[3.1.1]heptanes (aza-BCHeps), serving as saturated bioisosteres of arenes, the catalytic asymmetric variant remains underdeveloped and presents challenges. Herein, we developed several Lewis acid-catalyzed systems for the challenging dearomative (3+3) cycloaddition of BCBs and aromatic azomethine imines. This resulted in fused 2,3-diazabicyclo[3.1.1]heptanes, introducing a novel chemical space for the caged hydrocarbons. Moreover, an asymmetric Lewis acid catalysis strategy was devised for the (3+3) cycloadditions of BCBs and -iminoisoquinolinium ylides, forming chiral diaza-BCHeps with up to 99% yield and 97% ee. This study showcases a unique instance of asymmetric (3+3) cycloaddition facilitated by the creation of a chiral environment the activation of BCBs.
尽管双环丁烷(BCBs)的环加成反应已成为制备双环[1.1.1]烷烃(如氮杂双环[3.1.1]庚烷,aza-BCHeps)的可靠方法,aza-BCHeps可作为芳烃的饱和生物电子等排体,但催化不对称变体仍未得到充分发展且面临挑战。在此,我们开发了几种路易斯酸催化体系,用于BCBs与芳族偶氮甲碱亚胺具有挑战性的去芳构化(3+3)环加成反应。这产生了稠合的2,3-二氮杂双环[3.1.1]庚烷,为笼状烃类引入了一个新的化学空间。此外,还设计了一种不对称路易斯酸催化策略用于BCBs与亚氨基异喹啉鎓叶立德的(3+3)环加成反应,形成了产率高达99%、对映体过量值(ee)高达97%的手性二氮杂-BCHeps。这项研究展示了通过创建手性环境促进不对称(3+3)环加成反应的一个独特实例——BCBs的活化。