催化作用
穆斯堡尔谱学
Atom(片上系统)
电化学
密度泛函理论
化学
吸收光谱法
金属
原位
结晶学
光谱学
氧化还原
无机化学
物理化学
电极
计算化学
物理
有机化学
嵌入式系统
量子力学
计算机科学
作者
Xuning Li,Yaqiong Zeng,Ching Wei Tung,Ying Lü,S. Baskaran,Sung‐Fu Hung,Shifu Wang,Cong Xu,Junhu Wang,Ting Shan Chan,Hao Ming Chen,Jianchao Jiang,Qi Yu,Yanqiang Huang,Jun Li,Tao Zhang,Bin Liu
标识
DOI:10.1021/acscatal.1c01621
摘要
Atomically dispersed single-atom catalysts are among the most attractive electrocatalysts for the CO2 reduction reaction (CRR). To elucidate the origin of the exceptional activity of atomically dispersed Fe–N–C catalyst in CRR, we have performed operando 57Fe Mössbauer spectroscopic studies on a model single-Fe-atom catalyst with a well-defined N coordination environment. Combining with operando X-ray absorption spectroscopy, the in situ-generated four pyrrolic nitrogen atom-coordinated low-spin Fe(I) (LS FeIN4) featuring monovalent iron is identified as the reactive center for the conversion of CO2 to CO. Furthermore, density functional theory calculations reveal that the optimal binding strength of CO2 to the LS FeIN4 site, with strong orbital interactions between the singly occupied dz2 orbital of the Fe(I) site and the singly occupied π* orbital of [COOH] fragment, is the key factor for the excellent CRR performance.
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