Carrie Yang   Associate professor

杨晓红,东北大学冶金学院副教授,博士生导师。2014年毕业于澳大利亚新南威尔士大学材料科学与工程学院获工学博士学位,2015年5月回国任职于东北大学冶金学院,在冶金工程博士后流动站从事博士后研究工作,2017年起任东北大学冶金学院讲师、副教授。主要研究方向为光电催化能量转换技术,高级氧化技术与工艺,固废资源的提纯与回收等。作为项目负责人先后主持中国博士后基金,东北大学博士后基金,青年教师科研创新基金,中国自...Detials

A review on g-C 3 N 4 incorporated with organics for enhanced photocatalytic water splitting

Release time:2024-03-18  Hits:

  • Journal:Journal of Materials: Chemistry A
  • Issue:22
  • Volume:9
  • Abstract:The key challenge of the photocatalytic technology is to discover a low-cost photocatalyst with the functions of efficient sunlight utilization and high charge separation rate for application in the field of renewable energy generation. Graphitic carbon nitride (g-C3N4) has spurred worldwide attention due to its abundance of raw materials, superior visible-light response activity, facile synthetic strategy, chemical stability, and a unique layered structure. In the past decade, the combination of g-C3N4 and organic compounds became a research hotspot because of its low cost, adjustable solar light absorption band and stable crystal structures. In this review, (1) the latest developments in the morphology control of g-C3N4 as a photocatalyst including nanorods, nanotubes, nanosheets, nanospheres, porous structures and other different tunable nanostructures, are systematically studied. (2) The incorporation strategies of g-C3N4 with various organic compounds including recently reported organic molecules, polymers and metal–organic frameworks (MOFs) with the aim of improving the overall photocatalytic performance are discussed in detail. (3) We theoretically present applications in water splitting, CO2 reduction, pollutant degradation and environmental disinfection. Finally, the research challenges and prospects of organic compound composited g-C3N4 towards hydrogen evolution through water splitting are proposed.
  • Document Code:DOI:10.1039/D1TA00890K
  • Translation or Not:no