Graphitic carbon nitride based single-atom photocatalysts
Graphitic 碳氮化物基于单个原子的光催化剂作者机构:School of Physics and ElectronicsState Key Laboratory of Powder MetallurgyHunan Provincial Key Laboratory of Chemical Power SourcesCentral South UniversityChangsha410083China School of Metallurgy and EnvironmentCentral South UniversityChangsha410083China School of Materials Science and EngineeringZhengzhou UniversityZhengzhou450002China
出 版 物:《Frontiers of physics》 (物理学前沿(英文版))
年 卷 期:2020年第15卷第3期
页 面:13-26,M0001页
核心收录:
学科分类:081704[工学-应用化学] 07[理学] 070304[理学-物理化学(含∶化学物理)] 08[工学] 0817[工学-化学工程与技术] 0703[理学-化学]
基 金:This work was supported by the National Postdoctoral Program for Innovative Talents of China,China Postdoctoral Science Foundation(No.2018M640759) the National Natural Science Foundation of China(Grant Nos.21872174 and U1932148) the Project of Innovation-Driven Plan in Central South University(No.20180018050001) the International S&T Cooperation Program of China(No.2017YFE0127800) Hunan Provincial Science and Technology Program(No.2017XK2026) State Key Laboratory of Powder Metallurgy,Shenzhen Science and Technology Innovation Project(No.JCYJ20180307151313532) the Hunan Provincial Science and Technology Plan Project(No.2017TP1001) Thousand Youth Talents Plan of China and Hundred Youth Talents Program of Hunan
主 题:graphitic carbon nitride single atoms atomically dispersed sites site-isolated catalysts photocatalysis
摘 要:Single-atom photocatalysts,due to their high catalysis activity,selectivity and stability,become a hotspot in the field of *** carbon nitride(g-C3N4)is known as both a good support for single atoms and a star *** g-C3N4-based single-atom photocatalysts exhibits great potential in improving the photocatalytic *** this review,we summarize the recent progress in g-C3N4-based single-atom photocatalysts,mainly including preparation strategies,characterizations,and their photocatalytic *** significant roles of single atoms and catalysis mechanism in g-C3N4-based single-atom photocatalysts are *** last,the challenges and perspectives for exploring high-efficient g-C3N4-based single-atom photocatalysts are presented.