He Xinwei, Li Ruxue, Choy Pui Ying, Xie Mengqing, Duan Jiahui, Tang Qiang, Shang Yongjia, Kwong Fuk Yee
Key Laboratory of Functional Molecular Solids, Ministry of Education, College of Chemistry and Materials Science, Anhui Normal University, Wuhu, 241000, PR China.
State Key Laboratory of Synthetic Chemistry and Department of Chemistry, The Chinese University of Hong Kong, New Territories, Shatin, Hong Kong SAR, PR China.
Commun Chem. 2021 Mar 25;4(1):42. doi: 10.1038/s42004-021-00478-2.
Existing synthetic routes for accessing dibenzofuran core have intrinsic regioselectivity, limiting the substitution patterns available in heteropolycyclic arene products. Here we report a double 1,4-conjugate addition/intramolecular annulation cascade reaction between propargylamines and two equivalents of imidazolium methylides that allows efficient access of structurally versatile dibenzofurans. This transition metal-free protocol proceeds smoothly under bench-top air atmosphere and offers easy manipulation of substituents on the dibenzofuran core, and also provides good-to-excellent product yields with good functional group tolerance, particularly the -Br and -Cl groups which are often incompatible with existing metal-catalyzed C-C and/or C-O bond ring-forming processes. It is worth noting that ladder-type π-systems with all-arene quarternary carbon structure can be straightforwardly generated upon simple late-stage functionalization.
现有的用于构建二苯并呋喃核心结构的合成路线具有内在的区域选择性,这限制了杂多环芳烃产物中可获得的取代模式。在此,我们报道了一种在炔丙胺与两当量的咪唑叶立德之间进行的双1,4-共轭加成/分子内环化串联反应,该反应能够高效合成结构多样的二苯并呋喃。这种无过渡金属的反应方案在台式空气气氛下顺利进行,可方便地对二苯并呋喃核心结构上的取代基进行操作,并且在具有良好的官能团耐受性的情况下能提供良好至优异的产物收率,特别是 -Br和-Cl基团,它们通常与现有的金属催化的C-C和/或C-O键环化过程不相容。值得注意的是,通过简单的后期官能化可以直接生成具有全芳烃季碳结构的梯型π-体系。