催化作用
重组
Boosting(机器学习)
材料科学
化学
化学工程
有机化学
业务
计算机科学
工程类
财务
机器学习
作者
Zhenzhou Zhang,Lingyu Jia,Yanjia Guo,Yuqiong Li,Feixue Han,Bingbing Liao,Shanshan Dang,Fei Chen,Weifeng Tu,Xiaohu Yu,Yi‐Fan Han
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2025-05-09
卷期号:15 (11): 8740-8752
被引量:17
标识
DOI:10.1021/acscatal.5c00267
摘要
The electronic structure of the active centers of an iron-based catalyst can be modulated by neighboring N atoms in the hydrogenation of CO 2 . This work provides mechanistic insights into the relationship between the Fe 4 N active centers and carbon chain growth pathways. The Na/Fe 4 N catalyst exhibits higher selectivity toward CO and C 2+ olefins with a higher olefin-to-paraffin (O/P) ratio and lower selectivity toward CH 4 . Through combined experimental evidence and theoretical calculations, we establish that the carbide-mediated pathway is more favored than the CO insertion mechanism on both the Fe 4 N and Fe 5 C 2 catalysts. Furthermore, the energy barrier for C–C coupling on the Na/Fe 4 N(110) surface (0.62 eV) is lower than that on Na/Fe 5 C 2 (11–2) (0.98 eV). Comparative analysis reveals that Na/Fe 4 N has weaker hydrogenation capability compared to Na/Fe 5 C 2 while possessing more CH x intermediates and nondissociatively adsorbed CO species. These fundamental insights into enhancing C–C coupling in iron-based catalytic systems are expected to offer guidance for the rational design of high-performance catalysts for CO 2 utilization.
科研通智能强力驱动
Strongly Powered by AbleSci AI