催化作用
化学
草酸盐
纳米技术
贵金属
金属
科技与社会
表征(材料科学)
反应机理
反应条件
机制(生物学)
芯(光纤)
多相催化
组合化学
技术开发
材料科学
生化工程
钥匙(锁)
过程(计算)
氧化还原
作者
Peipei Lei,Man Liu,Jiaming Wang,Jiangang Chen
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2026-02-16
卷期号:16 (5): 4232-4265
被引量:1
标识
DOI:10.1021/acscatal.5c08378
摘要
The catalytic hydrogenation of oxalate is a pivotal technology for converting non-petroleum resources, such as coal, into high-value products, holding significant importance for diversifying the energy landscape. This technology has been successfully industrialized with its core relying on the development of high-performance hydrogenation catalysts. This review systematically elaborates on the reaction mechanism of oxalate hydrogenation and provides a detailed commentary on the research progress of major catalyst systems. These include widely used copper-based catalysts, highly active noble metal catalysts, and other emerging non-noble metal catalysts. The review focuses on the structure–activity relationships between key parameters (such as active site structure, support properties, and promoter effects) and catalytic performance. Furthermore, the review analyzes catalyst deactivation mechanisms and summarizes the corresponding optimization strategies. Finally, it outlines future research directions, suggesting that precise multi-scale regulation of active sites, the development of novel stable catalyst systems, and a deeper mechanistic understanding facilitated by advanced in situ characterization and theoretical calculations will be crucial for advancing this technology toward broader industrial application. This review aims to provide theoretical guidance for developing next-generation, efficient industrial catalysts.
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