化学
催化作用
双功能
继电器
组合化学
串联
碳氢化合物
选择性
分子
甲醇
纳米技术
化学合成
均相催化
反应条件
有机合成
有机化学
协同催化
双功能催化剂
级联反应
多相催化
作者
Yubing Li,Suhan Liu,Yu Xie,Kang Cheng,Qh Zhang,Jincan Kang,Yue Wang
出处
期刊:Chemical Reviews
[American Chemical Society]
日期:2026-06-01
卷期号:126 (12): 7112-7164
标识
DOI:10.1021/acs.chemrev.6c00026
摘要
C 1 molecules (e.g., CO, CO 2, CH 4, and CH 3 OH) are pivotal platforms for synthesizing fuels and chemicals from nonpetroleum resources. However, the selective activation of C–O and C–H bonds, precise control of C–C formation, and preservation of functional groups are tough challenges in catalysis. Traditional routes like Fischer–Tropsch synthesis and methanol conversion often suffer from limited selectivity or require multiple processing steps. By using a relay catalysis strategy, a series of bifunctional or multifunctional catalysts composed of metals and acidic zeolites has been developed for the selective hydrogenation of CO to hydrocarbon fuels. Recently, this methodology has also been successfully applied for the precise synthesis of high-value chemicals, such as lower olefins, aromatic hydrocarbons, and higher alcohols from not only CO but also CO 2 and CH 4 . The core of relay catalysis is integrating sequential reactions within one multifunctional catalyst or in a single reactor and providing controllable product selectivity. This review will analyze recent advances in C 1 chemistry using relay catalysis as well as tandem catalysis for the selective synthesis of hydrocarbon fuels and chemicals. We also detail the design principles of relay pathways, outlining the strengths, applications, and future potential of relay catalysis in C1 chemistry.
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