Lu Ye, Wang Ying, Li He, Li Peihe, Feng Xiujuan, Yamamoto Yoshinori, Bao Ming, Liu Jinghai
Inner Mongolia Key Laboratory of Carbon Nanomaterials, Nano Innovation Institute (NII), College of Chemistry and Materials Science, Inner Mongolia Minzu University Tongliao 028000 China
State Key Laboratory of Fine Chemicals, Dalian University of Technology Dalian 116023 China
RSC Adv. 2023 Jan 23;13(5):3371-3376. doi: 10.1039/d2ra07120g. eCollection 2023 Jan 18.
An efficient and highly selective heterogeneous catalyst system for hydroamination of alkynes was developed using unsupported gold nanopores (AuNPore) for the first time. The AuNPore-catalyzed highly regioselective hydroamination of alkynes proceeded smoothly without any additive and solvent under mild conditions (rt-50 °C) to yield Markovnikov imines in satisfactory to excellent yields. No gold leached from AuNPore during the hydroamination of alkynes. Moreover, the catalyst was easily recovered and reused without any loss of catalytic activity. A one-pot, two-step procedure using a single AuNPore catalyst has been devised to produce secondary amines derived from readily available alkynes and anilines with high atom efficiency.
首次使用无载体金纳米孔(AuNPore)开发了一种用于炔烃氢胺化的高效且高选择性的多相催化剂体系。在温和条件(室温至50°C)下,AuNPore催化的炔烃高度区域选择性氢胺化反应无需任何添加剂和溶剂即可顺利进行,以令人满意至优异的产率生成马氏规则的亚胺。在炔烃氢胺化过程中没有金从AuNPore中浸出。此外,催化剂易于回收和重复使用,且催化活性没有任何损失。已经设计出一种使用单一AuNPore催化剂的一锅两步法,以高原子效率生产源自易得炔烃和苯胺的仲胺。