Di Xuan, Zhou Sitian, Qin Yali, Li Wenjun, Zhang Yue, Zhang Jie, Shen Xu, Han Jie, Xie Jin, Jin Hongming
School of Pharmacy, Nanjing University of Chinese Medicine, Nanjing, China.
State Key Laboratory of Coordination Chemistry, Jiangsu Key Laboratory of Advanced Organic Materials, Chemistry and Biomedicine Innovation Center (ChemBIC), School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, China.
Nat Commun. 2025 Jan 25;16(1):1025. doi: 10.1038/s41467-025-56184-3.
Stereocontrolled construction of tetrasubstituted olefins has been an attractive issue yet remains challenging for synthetic chemists. In this manuscript, alkynyl selenides, when treated with ArBCl, are subject to an exclusive 1,1-carboboration, affording tetrasubstituted alkenes with excellent levels of E-selectivity. Detailed mechanistic studies, supported by DFT calculations, elucidates the role of selenium in this 1,1-addition process. Coupled with subsequent C-B and C-Se bond transformations, this 1,1-addition protocol constitutes a modular access to stereodefined all-carbon tetrasubstituted alkenes. The merit of this approach is demonstrated by programmed assembly of diverse functionalized multi-arylated alkenes, especially enabling the stereospecific synthesis of all six possible stereoisomers of tetraarylethene (TAE) derived from the random permutation of four distinct aryl substituents around the double bond. The diversity-oriented synthesis is further utilized to explore different TAE luminogenic properties and potential Se-containing antitumor lead compounds.
四取代烯烃的立体控制构建一直是一个引人关注的问题,但对合成化学家来说仍然具有挑战性。在本论文中,炔基硒醚在与ArBCl反应时,会发生专一的1,1-碳硼化反应,生成具有优异E-选择性的四取代烯烃。在DFT计算的支持下进行的详细机理研究阐明了硒在这一1,1-加成过程中的作用。结合随后的C-B和C-Se键转化,这种1,1-加成方法构成了一种模块化的途径,可用于立体定义的全碳四取代烯烃的合成。通过对多种功能化多芳基化烯烃的程序化组装证明了这种方法的优点,特别是能够立体专一性地合成由围绕双键的四个不同芳基取代基的随机排列衍生的四芳基乙烯(TAE)的所有六种可能的立体异构体。这种以多样性为导向的合成方法进一步用于探索不同TAE的发光性质以及潜在的含硒抗肿瘤先导化合物。