TY - JOUR
T1 - The Modification of Graphite Carbon Nitride and Its Applications in Photocatalysis
AU - Li, Jun
AU - Ma, Dandan
AU - Zou, Yajun
AU - Shi, Jianwen
N1 - Publisher Copyright:
© 2024, Materials China. All rights reserved.
PY - 2024
Y1 - 2024
N2 - Graphitic carbon nitride (g-C3 N4) is one of the most promising photocatalytic materials due to its unique electronic structure, visible light response, and excellent chemical stability. Whereas, the practical applications of pristine g-C3 N4 in photocatalysis are still facing with huge challenges, such as poor specific surface area, low electronic conductivity, insufficient visible light absorption, and fast recombination of photoinduced charge carriers. Lots of research works have been carried out to improve the photocatalytic performance and extend the applications of g-C3 N4, and many exciting progresses have been gained. In this work, we summarized the research status of g-C3 N4 in the field of photocatalysis. The modified strategies based on g-C3 N4 were discussed, including molecular structure engineering, morphology control, co-catalyst deposition, heterostructure and homostructure construction. Then, the multifunctional applications of g-C3 N4 based materials in photocatalysis including H2 evolution, pollutant removal, CO2 reduction and organic synthesis were reviewed, and the opportunities and challenges for the development of high-performance g-C N based materials were prospected.
AB - Graphitic carbon nitride (g-C3 N4) is one of the most promising photocatalytic materials due to its unique electronic structure, visible light response, and excellent chemical stability. Whereas, the practical applications of pristine g-C3 N4 in photocatalysis are still facing with huge challenges, such as poor specific surface area, low electronic conductivity, insufficient visible light absorption, and fast recombination of photoinduced charge carriers. Lots of research works have been carried out to improve the photocatalytic performance and extend the applications of g-C3 N4, and many exciting progresses have been gained. In this work, we summarized the research status of g-C3 N4 in the field of photocatalysis. The modified strategies based on g-C3 N4 were discussed, including molecular structure engineering, morphology control, co-catalyst deposition, heterostructure and homostructure construction. Then, the multifunctional applications of g-C3 N4 based materials in photocatalysis including H2 evolution, pollutant removal, CO2 reduction and organic synthesis were reviewed, and the opportunities and challenges for the development of high-performance g-C N based materials were prospected.
KW - g-C N
KW - heterojunction
KW - homojunction
KW - modified strategies
KW - photocatalytic applications
UR - https://www.scopus.com/pages/publications/105014102268
U2 - 10.7502/j.issn.1674-3962.202310019
DO - 10.7502/j.issn.1674-3962.202310019
M3 - 文章
AN - SCOPUS:105014102268
SN - 1674-3962
VL - 43
SP - 565
EP - 578
JO - Materials China
JF - Materials China
IS - 7
ER -