光催化
钴
掺杂剂
氮化碳
兴奋剂
碳纤维
吸收(声学)
材料科学
氮化物
选择性
金属
吸收边
石墨氮化碳
协调数
电子结构
纳米技术
无机化学
化学
催化作用
带隙
冶金
计算化学
光电子学
复合材料
有机化学
离子
图层(电子)
复合数
作者
Peipei Huang,Jiahao Huang,Junying Li,Thang Duc Pham,Lei Zhang,Jie He,Gary W. Brudvig,N. Aaron Deskins,Anatoly I. Frenkel,Gonghu Li
标识
DOI:10.1021/acs.jpcc.2c01216
摘要
Single Co 2+ sites in graphitic carbon nitride (C 3 N 4 ) have demonstrated excellent activity and selectivity in photocatalytic CO 2 reduction. In this work, we combine computational and spectroscopic tools, including X-ray absorption spectroscopy, to probe the structure of such single Co 2+ sites. Our results indicate that the Co 2+ sites exist in the Co–N 2+2 coordination at the edges of C 3 N 4 flakes. This mode of coordination is further supported by experimental results obtained using single Co 2+ sites in C 3 N 4 materials treated with NH 3, which contain more edge sites than untreated C 3 N 4 . In our experimental observations, doping C 3 N 4 with carbon is found to be important for the photocatalytic properties of the single Co 2+ sites. A simplified model is proposed to explain the origin of the observed enhancement effect of C doping. In this model, the presence of C dopant near the metal centers results in shorter Co–N bond length and stronger Co–N binding energy. In addition to enhanced light absorption and charge separation in C-doped C 3 N 4, the stronger Co–N binding upon C doping likely contributes to the improved catalytic properties of the single Co 2+ sites.
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