Volume 9 Issue 4
Apr.  2024
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Article Contents
Yuhan Li, Ziteng Ren, Zhengjiang He, Ping Ouyang, Youyu Duan, Wendong Zhang, Kangle Lv, Fan Dong. Crystallinity-defect matching relationship of g-C3N4: Experimental and theoretical perspectives. Green Energy&Environment, 2024, 9(4): 623-658. doi: 10.1016/j.gee.2023.02.012
Citation: Yuhan Li, Ziteng Ren, Zhengjiang He, Ping Ouyang, Youyu Duan, Wendong Zhang, Kangle Lv, Fan Dong. Crystallinity-defect matching relationship of g-C3N4: Experimental and theoretical perspectives. Green Energy&Environment, 2024, 9(4): 623-658. doi: 10.1016/j.gee.2023.02.012

Crystallinity-defect matching relationship of g-C3N4: Experimental and theoretical perspectives

doi: 10.1016/j.gee.2023.02.012
  • Good crystallinity can reduce the charge recombination centers caused by defects, whilst structures with strong polycondensation have high charge mobility, leading to more charge transfer to the material surface for reaction. Much effort has been put into the preparation of a highly efficient g-C3N4 with defects to improve its application potential under the premise in high crystallinity. Hence, this review paper emphasizes the importance to balance the defect and crystallinity of g-C3N4. In addition, detailed discussion on the relationship between defects and activity of g-C3N4 was carried out based on its applications in environmental purification (e.g., VOCs oxidation, NO oxidation, H2O2 evolution, sterilization, pesticide oxidation) and energy conversion (H2 evolution, N2 fixation and CO2 reduction). Lastly, the challenge in developing more efficient defective g-C3N4 photocatalytic materials is summarized.

     

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