Shi Haofeng, Zhang Jingran, Li Xuemin, He Jiaxin, Sun Yuli, Wu Jialiang, Du Yunfei
Tianjin Key Laboratory for Modern Drug Delivery & High-Efficiency, School of Pharmaceutical Science and Technology, Faculty of Medicine, Tianjin University Tianjin 300072 China
Chem Sci. 2024 Jul 22;15(32):13058-13067. doi: 10.1039/d4sc04461d. eCollection 2024 Aug 14.
Organohalides are vital organic building blocks with applications spanning various fields. However, direct halogenation of certain neutral or unreactive substrates by using solely the regular halogenating reagents has proven challenging. Although various halogenation approaches activating halogenating reagents or substrates have emerged, a catalytic system enabling broad substrate applicability and diverse halogenation types remains relatively underexplored. Inspired by the halogenation of arenes thianthrenation of arenes, here we report that thianthrene, in combined use with trifluoromethanesulfonic acid (TfOH), could work as an effective catalytic system to activate regular halogenating reagents (NXS). This new protocol could accomplish multiple types of halogenation of organic compounds including aromatics, olefins, alkynes and ketones. The mechanism study indicated that a highly reactive electrophilic halogen thianthrenium species, formed from the reaction of NXS with thianthrene in the presence of TfOH, was crucial for the efficient halogenation process.
有机卤化物是重要的有机结构单元,其应用涵盖各个领域。然而,仅使用常规卤化试剂对某些中性或无反应性的底物进行直接卤化已被证明具有挑战性。尽管已经出现了各种活化卤化试剂或底物的卤化方法,但一种能够实现广泛底物适用性和多种卤化类型的催化体系仍相对未被充分探索。受芳烃卤化和芳烃噻蒽化的启发,我们在此报告,噻蒽与三氟甲磺酸(TfOH)联合使用时,可以作为一种有效的催化体系来活化常规卤化试剂(NXS)。这种新方法可以完成有机化合物的多种类型卤化,包括芳烃、烯烃、炔烃和酮。机理研究表明,在TfOH存在下,NXS与噻蒽反应形成的高活性亲电卤化噻蒽鎓物种对于高效卤化过程至关重要。