杂原子
电催化剂
催化作用
化学
一氧化碳
碳纤维
金属
石墨烯
氮气
吸附
无机化学
组合化学
电化学
纳米技术
材料科学
有机化学
物理化学
电极
戒指(化学)
复合材料
复合数
作者
Tianyang Liu,Yu Wang,Yafei Li
出处
期刊:JACS Au
[American Chemical Society]
日期:2023-02-15
卷期号:3 (3): 943-952
被引量:15
标识
DOI:10.1021/jacsau.3c00026
摘要
Metal-nitrogen-carbon single-atom catalysts (SACs) have exhibited substantial potential for CO2 electroreduction. Unfortunately, the SACs generally cannot generate chemicals other than CO, while deep reduction products are more appealing because of their higher market potential, and the origin of governing CO reduction (COR) remains elusive. Here, by using constant-potential/hybrid-solvent modeling and revisiting Cu catalysts, we show that the Langmuir-Hinshelwood mechanism is of importance for *CO hydrogenation, and the pristine SACs lack another site to place *H, thus preventing their COR. Then, we propose a regulation strategy to enable COR on the SACs: (I) the metal site has a moderate CO adsorption affinity; (II) the graphene skeleton is doped by a heteroatom to allow *H formation; and (III) the distance between the heteroatom and the metal atom is appropriate to facilitate *H migration. We discover a P-doped Fe-N-C SAC with promising COR reactivity and further extend this model to other SACs. This work provides mechanistic insight into the limiting factors of COR and highlights the rational design of the local structures of active centers in electrocatalysis.
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