Chen Jia-Wei, Ji Wen-Jun, Huang Xue-Ying, Ge Danhua, Shen Zhi-Liang, Guo Kai, Chu Xue-Qiang
Technical Institute of Fluorochemistry, School of Chemistry and Molecular Engineering, Nanjing Tech University Nanjing 211816 China
College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University Nanjing 211816 China
Chem Sci. 2024 Jun 24;15(30):12026-12035. doi: 10.1039/d4sc03230f. eCollection 2024 Jul 31.
Alkyne annulation has been widely used in organic synthesis for the construction of azacycles with unique structural and physicochemical properties. However, the analogous transformation of fluoroalkynes remains a challenge and has seen limited progress. Herein we report a 1,2,3,4-tetrafunctionalization of polyfluoroalkynes for the divergent construction of 5-7-membered ()-1,2-difluorovinyl azacycles. The use of the fluorine atom as a detachable "activator" not only obviates the use of any transition metal catalysts and oxidizing reagents, but also ensures the [3-5 + 2]-annulation and defluorinative functionalization of fluoroalkynes with high chemo-, regio-, and stereoselectivities. This method exhibits a broad substrate scope, good functional group tolerance, and excellent scalability, providing a modular platform for accessing fluorinated skeletons of medicinal and biological interest. The late-stage modification of complex molecules, the multi-component 1,2-diamination of fluoroalkyne, and the synthesis of valuable organofluorides from the obtained products further highlight the real-world utility of this fluoroalkyne annulation technology.
炔烃环化反应已广泛应用于有机合成中,用于构建具有独特结构和物理化学性质的氮杂环。然而,氟代炔烃的类似转化仍然是一个挑战,进展有限。在此,我们报道了多氟代炔烃的1,2,3,4-四官能化反应,用于发散式构建5至7元()-1,2-二氟乙烯基氮杂环。使用氟原子作为可去除的“活化剂”不仅避免了使用任何过渡金属催化剂和氧化试剂,还确保了氟代炔烃的[3-5 + 2]环化反应和脱氟官能化反应具有高化学、区域和立体选择性。该方法具有广泛的底物范围、良好的官能团耐受性和出色的可扩展性,为获取具有药用和生物学意义的氟化骨架提供了一个模块化平台。复杂分子的后期修饰、氟代炔烃的多组分1,2-二胺化反应以及从所得产物合成有价值的有机氟化物进一步突出了这种氟代炔烃环化技术的实际应用价值。