催化作用
吸附
金属
甲烷
材料科学
活性炭
碳纤维
化学工程
活动站点
无机化学
镍
催化加氢
甲烷化
光化学
化学
过渡金属
多相催化
一氧化碳
作者
Bolang Li,Min Chen,Xueyan Chen,Xiaoxiao Qin,Weiming Qian,Jianghao Zhang,Chao Gai,Kailong Ye,Fudong Liu,Hong He,Changbin Zhang
出处
期刊:Small
[Wiley]
日期:2026-08-14
卷期号:: e74955-e74955
摘要
ABSTRACT CO 2 hydrogenation to methane is a promising strategy for sustainable fuel production and carbon emission control. Ni‐based catalysts are widely investigated for CO 2 methanation, while the exact nature of active sites is still controversial. Here, we show that the metallic Ni in conjunction with hydroxyl groups plays a determining role in CO 2 hydrogenation reaction. Keeping both the high proportion of Ni 0 and the high amount of OH groups achieves excellent catalytic activity. Conversely, a decrease in either the proportion of Ni 0 or the concentration of OH groups would result in a sharply decreased activity. We reveal that interfacial Ni 0 ‐OH sites are highly efficient for CO 2 adsorption and activation, which follows the key step of CO 2 hydrogenation to HCOO* and exhibits a lower barrier on the interfacial Ni 0 ‐OH sites than on the Ni 0 sites. These findings provide essential insights into the identification of active sites on Ni‐based catalysts for CO 2 hydrogenation and are pivotal for the design of highly active catalysts.
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