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Mechanism on Carbon Vacancies in Polymeric Carbon Nitride for CO2 Photoreduction

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【作者】 刘少华李奕丁开宁陈文凯章永凡林伟

【Author】 LIU Shao-Hua;LI Yi;DING Kai-Ning;CHEN Wen-Kai;ZHANG Yong-Fan;LIN Wei;State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University;Fujian Provincial Key Laboratory of Theoretical and Computational Chemistry;

【通讯作者】 林伟;

【机构】 State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou UniversityFujian Provincial Key Laboratory of Theoretical and Computational Chemistry

【摘要】 Defect engineering has being regarded as one of the effective ways to regulate chemical and electronic structure of semiconductors. Recently, our collaborative work has shown experimentally that carbon vacancy on polymeric carbon nitride(CV) can greatly improve the CO2 to CO conversion with a 45-fold improvement over the polymeric carbon nitride(Angew. Chem. Int. Ed., 2019, 58, 1134). In order to clarify the detailed mechanism of promotion, we have systematically studied the electronic properties of CV and hydrogenated CV(CV+H) as well as the effective CO2 reduction reaction through density functional theory calculations. We found that it is the synergistic effect for the CO2 reduction reaction in the CV systems, as the onset potentials of several CVs are much lower than that of the polymeric carbon nitride. In particular, the onset potentials of CV1, CV2, and CV2+H are around 0.9~1.5 eV with a strong chemisorbed CO2 on them. Combined with the analysis of the electronic properties, our results confirm that defect engineering increases the lifetime of photo-generated charges, improves photocatalytic activity, and promotes the CO2 reduction reaction on the defected polymeric carbon nitrides.

【Abstract】 Defect engineering has being regarded as one of the effective ways to regulate chemical and electronic structure of semiconductors. Recently, our collaborative work has shown experimentally that carbon vacancy on polymeric carbon nitride(CV) can greatly improve the CO2 to CO conversion with a 45-fold improvement over the polymeric carbon nitride(Angew. Chem. Int. Ed., 2019, 58, 1134). In order to clarify the detailed mechanism of promotion, we have systematically studied the electronic properties of CV and hydrogenated CV(CV+H) as well as the effective CO2 reduction reaction through density functional theory calculations. We found that it is the synergistic effect for the CO2 reduction reaction in the CV systems, as the onset potentials of several CVs are much lower than that of the polymeric carbon nitride. In particular, the onset potentials of CV1, CV2, and CV2+H are around 0.9~1.5 eV with a strong chemisorbed CO2 on them. Combined with the analysis of the electronic properties, our results confirm that defect engineering increases the lifetime of photo-generated charges, improves photocatalytic activity, and promotes the CO2 reduction reaction on the defected polymeric carbon nitrides.

【基金】 financially supported by the National Natural Science Foundation of China (21973014;21773030);the Award Program of Minjiang Scholar Professorship for financial support
  • 【文献出处】 Chinese Journal of Structural Chemistry ,结构化学(英文版) , 编辑部邮箱 ,2020年12期
  • 【分类号】O631.1;O644.1
  • 【被引频次】4
  • 【下载频次】92
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