Zhang Xiang-Xin, Xu Shan-Tong, Li Xue-Ting, Song Ting-Ting, Ji Ding-Wei, Chen Qing-An
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, People's Republic of China.
University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.
J Am Chem Soc. 2025 Apr 2;147(13):11533-11542. doi: 10.1021/jacs.5c01983. Epub 2025 Mar 25.
Dearomative skeletal editing of benzenoids represents a promising yet challenging strategy for the rapid construction of high-value carbon frameworks from readily accessible starting materials. Büchner reaction is a unique type of expansive skeletal editing that transforms benzenoids into functionalized cycloheptatrienes. However, due to challenges in compatibility and selectivity, achieving seamless integration of this reaction with dearomative cycloaddition within a unified system remains undeveloped. Here, we demonstrated an energy-transfer-induced intermolecular dearomative skeletal editing reaction of benzenoids with a range of electronically diverse alkynes. This protocol employed -acylimines as diradical precursors to efficiently construct various structurally diverse polycyclic frameworks in high chemo-, regio-, and diastereoselectivities that have been previously inaccessible. The challenges related to general reactivity and selectivity issues were circumvented through the smooth merging of photoinduced skeletal editing with dearomative cycloaddition. Experimental and computational studies were performed to support the diradical mechanism and interpret the origins of the observed chemo-, regio-, and diastereoselectivities.
苯类化合物的去芳构化骨架编辑是一种很有前景但具有挑战性的策略,可从易于获得的起始原料快速构建高价值碳骨架。布赫纳反应是一种独特的扩环骨架编辑类型,可将苯类化合物转化为功能化环庚三烯。然而,由于兼容性和选择性方面的挑战,在统一体系中实现该反应与去芳构化环加成的无缝整合仍未得到发展。在此,我们展示了一种能量转移诱导的苯类化合物与一系列电子性质不同的炔烃之间的分子间去芳构化骨架编辑反应。该方法采用酰亚胺作为双自由基前体,以高化学、区域和非对映选择性高效构建各种结构多样的多环骨架,这些骨架以前是无法获得的。通过光诱导骨架编辑与去芳构化环加成的顺利结合,规避了与一般反应性和选择性问题相关的挑战。进行了实验和计算研究以支持双自由基机理并解释观察到的化学、区域和非对映选择性的起源。