氢
丙醛
乙烯
羰基化
丙酸盐
氢解
化学
光化学
组合化学
有机化学
一氧化碳
催化作用
醛
作者
Yinpan Zhang,Qiang Guo,Feng Wang
标识
DOI:10.1002/cctc.202301568
摘要
Abstract The carbonylation reaction of olefins is one of the significant pathways for the synthesis of oxygen‐containing compounds such as aldehydes, esters, and amides. The ethylene carbonylation reactions have drawn much interest since they produce important chemicals such as propionaldehyde and methyl propionate, which are crucial intermediates for the synthesis of polymers. Moreover, ethylene carbonylation, coupled with C−C bond formation, shows great promise for the synthesis of 3‐pentanone. However, due to the presence of various competing reactions, balancing the activity and selectivity of ethylene carbonylation reactions has remained a challenge. This concept article aims at describing the recent advances in the ethylene carbonylation with different hydrogen sources.
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