Li Tianbo, Chen Fang, Lang Rui, Wang Hua, Su Yang, Qiao Botao, Wang Aiqin, Zhang Tao
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Angew Chem Int Ed Engl. 2020 May 4;59(19):7430-7434. doi: 10.1002/anie.202000998. Epub 2020 Mar 10.
The hydroformylation of olefins is one of the most important homogeneously catalyzed industrial reactions for aldehyde synthesis. Various ligands can be used to obtain the desired linear aldehydes in the hydroformylation of aliphatic olefins. However, in the hydroformylation of aromatic substrates, branched aldehydes are formed preferentially with common ligands. In this study, a novel approach to selectively obtain linear aldehydes in the hydroformylation of styrene and its derivatives was developed by coupling with a water-gas shift reaction on a Rh single-atom catalyst without the use of ligands. Detailed studies revealed that the hydrogen generated in situ from the water-gas shift is critical for the highly regioselective formation of linear products. The coupling of a traditional homogeneous catalytic process with a heterogeneous catalytic reaction to tune product selectivity may provide a new avenue for the heterogenization of homogenous catalytic processes.
烯烃的氢甲酰化反应是用于醛合成的最重要的均相催化工业反应之一。在脂肪族烯烃的氢甲酰化反应中,可以使用各种配体来获得所需的线性醛。然而,在芳香族底物的氢甲酰化反应中,使用常见配体时会优先形成支链醛。在本研究中,开发了一种在无配体的Rh单原子催化剂上通过与水煤气变换反应偶联,在苯乙烯及其衍生物的氢甲酰化反应中选择性获得线性醛的新方法。详细研究表明,水煤气变换原位产生的氢气对于线性产物的高区域选择性形成至关重要。将传统的均相催化过程与多相催化反应偶联以调节产物选择性,可能为均相催化过程的多相化提供一条新途径。