Guo Qi, Shen Guoli, Lu Guangfu, Qian Jinyi, Que Qitao, Li Jiuling, Guo Yafei, Fan Baomin
Yunnan Key Laboratory of Chiral Functional Substance Research and Application, School of Chemistry & Environment, Yunnan Minzu University, 2929 Yuehua road, Kunming, 650500, China.
Adv Sci (Weinh). 2024 Feb;11(7):e2305271. doi: 10.1002/advs.202305271. Epub 2023 Dec 10.
Catalytic hydrogenation of unsaturated hydrocarbons to alkenes and alkanes using molecular hydrogen is one of the most fundamental transformations in organic synthesis. While methodologies involving transition metals as catalysts in homogeneous and heterogeneous processes have been well developed, metal-free catalytic hydrogenation offers an ideal approach for future chemistry. Herein, the common and inexpensive quaternary ammonium salts are first introduced as catalysts in the catalytic hydrogenation system for the transformations from alkynes or olefins into the corresponding olefins or alkanes. Interestingly, the hydrogenation process of alkynes can be controlled to selectively produce alkenes or alkanes under different conditions. Moreover, the possible mechanism is discussed in new insights into the catalytic behavior of quaternary ammonium salts.
使用分子氢将不饱和烃催化氢化为烯烃和烷烃是有机合成中最基本的转化反应之一。虽然在均相和非均相过程中使用过渡金属作为催化剂的方法已经得到了很好的发展,但无金属催化氢化提供了一种未来化学的理想方法。在此,首次引入常见且廉价的季铵盐作为催化氢化体系中的催化剂,用于将炔烃或烯烃转化为相应的烯烃或烷烃。有趣的是,炔烃的氢化过程可以在不同条件下控制以选择性地生成烯烃或烷烃。此外,还从季铵盐催化行为的新视角讨论了可能的机理。