乙烯
催化作用
环氧乙烷
乙二醇
氧化物
材料科学
化学
选择性
双金属
组合化学
有机化学
纳米技术
聚合物
共聚物
复合材料
作者
Hongling Yang,Ganggang Li,Wei Ma,Boyi Hao,Zhongshen Zhang,Yong‐Chun Liu,Zhengping Hao
标识
DOI:10.1002/chem.202404773
摘要
Epoxidation of ethylene to produce ethylene oxide (EO) is a vital heterogeneous catalytic chemical process in industry, as EO is an important intermediate for the synthesis of fine chemicals including ethylene glycol, ethoxylates, plastics and polyester. EO is commercially produced by the silver‐catalyzed partial oxidation of ethylene with air or oxygen. However, it remains challenging to understand its chemical behavior under reaction conditions. To overcome this challenge, a series of catalysts with well‐defined structures have been developed. The present review is devoted to summarizing the recent advances in the exploitation of novel catalytic materials for the epoxidation of ethylene, such as metal nanoparticles, clusters, single atoms, and bimetal. The role of promoters in selectivity enhancement will be discussed. A deep understanding of the active species, oxygen species, active structures, activity‐structure relationship, and mechanisms contributing to epoxidation process are highlighted. The integration with other advanced technologies such as electrocatalytic and photocatalytic is also reviewed. Finally, the current challenges and future prospects are provided so as to give guidance for the design of efficient catalysts for heterogeneous epoxidation of ethylene to EO, and to improve the fundamental understanding of the underlying catalytic chemistry.
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