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Sudhaik, A., Raizada, P., Shandilya, P., Jeong, D. Y., Lim, J. H., & Singh, P. (2018). Review on fabrication of graphitic carbon nitride based efficient nanocomposites for photodegradation of aqueous phase organic pollutants. Journal of Industrial and Engineering Chemistry, 67, 28-51.Search in Google Scholar
Liu, J., Fu, W., Liao, Y., Fan, J., & Xiang, Q. (2021). Recent advances in crystalline carbon nitride for photocatalysis. Journal of Materials Science & Technology, 91, 224-240.Search in Google Scholar
Wang, S., Zhang, J., Li, B., Sun, H., Wang, S., & Duan, X. (2022). Morphology-dependent photocatalysis of graphitic carbon nitride for sustainable remediation of aqueous pollutants: A mini review. Journal of Environmental Chemical Engineering, 10(3), 107438.Search in Google Scholar
Yang, Y., Li, X., Zhou, C., Xiong, W., Zeng, G., Huang, D., ... & Guo, H. (2020). Recent advances in application of graphitic carbon nitride-based catalysts for degrading organic contaminants in water through advanced oxidation processes beyond photocatalysis: A critical review. Water research, 184, 116200.Search in Google Scholar
Tan, J., Li, Z., Li, J., Wu, J., Yao, X., & Zhang, T. (2021). Graphitic carbon nitride-based materials in activating persulfate for aqueous organic pollutants degradation: A review on materials design and mechanisms. Chemosphere, 262, 127675.Search in Google Scholar
Hasija, V., Raizada, P., Sudhaik, A., Sharma, K., Kumar, A., Singh, P., ... & Thakur, V. K. (2019). Recent advances in noble metal free doped graphitic carbon nitride based nanohybrids for photocatalysis of organic contaminants in water: a review. Applied Materials Today, 15, 494-524.Search in Google Scholar
John, A., Rajan, M. S., & Thomas, J. (2021). Carbon nitride-based photocatalysts for the mitigation of water pollution engendered by pharmaceutical compounds. Environmental Science and Pollution Research, 28(20), 24992-25013.Search in Google Scholar
Ratshiedana, R., Kuvarega, A. T., & Mishra, A. K. (2021). Titanium dioxide and graphitic carbon nitride– based nanocomposites and nanofibres for the degradation of organic pollutants in water: a review. Environmental Science and Pollution Research, 28(9), 10357-10374.Search in Google Scholar
Shen, Y., Dos santos-Garcia, A. J., & Martín de Vidales, M. J. (2020). Graphitic carbon nitride-based composite in advanced oxidation processes for aqueous organic pollutants removal: a review. Processes, 9(1), 66.Search in Google Scholar
Darkwah, W. K., & Oswald, K. A. (2019). Photocatalytic applications of heterostructure graphitic carbon nitride: Pollutant degradation, hydrogen gas production (water splitting), and CO 2 reduction. Nanoscale research letters, 14, 1-17.Search in Google Scholar
Wang, X., Li, X., Wang, J., & Zhu, H. (2020). Recent advances in carbon nitride-based nanomaterials for the removal of heavy metal ions from aqueous solution. J. Inorg. Mater, 35(3).Search in Google Scholar
Budiarso, I. J., Dabur, V. A., Rachmantyo, R., Judawisastra, H., Hu, C., & Wibowo, A. (2024). Carbon nitride-and graphene-based materials for the photocatalytic degradation of emerging water pollutants. Materials Advances.Search in Google Scholar
Youn Jun Lee,Chae Young Son,Yoo Jae Jeong,In Sun Cho,Seong Jik Park & Chang Gu Lee.(2024).Cobalt(VI)-oxo species-mediated selective oxidation of electron-rich organic contaminants by Co-loaded hydroxylated g-C3N4 with high resistance to an inhibitory effect of background constituents. Applied Surface Science160545-160545.Search in Google Scholar
Wan Ting Lin,Ping Fu,Wan Long Li,Yuan Hui Yu,Zi Lu Zhang,Hong Yu Fan... & Ling Shu Wan.(2024). Cross-linked g-C3N4 nanofibers enable thermal stable composite membranes for high-performance loose nanofiltration.Chemical Engineering Journal153197-153197.Search in Google Scholar
Dazhi Shen,Alexander Luis Imbault,Gulimire Balati,Jie Ouyang & Yunhua Li.(2024).Dissolution of g-C3N4 Using Zinc Chloride Molten Salt Hydrates for Nanobelt Fabrication and Photocatalytic H2O2 Production..Chemistry (Weinheim an der Bergstrasse, Germany)e202401847.Search in Google Scholar
Eleen Dayana Mohamed Isa,Roshafima Rasit Ali,Nurfatehah Wahyuny Che Jusoh,Yuki Nagao,Kentaro Aoki,Shun Nishimura... & Siti Husnaa Mohd Taib.(2024).Enhanced paracetamol photodegradation over synthesized TiO2/g-C3N4 nanocomposites: Effect of g-C3N4 loading on the properties and performance.Colloids and Surfaces A: Physicochemical and Engineering Aspects134066-.Search in Google Scholar
Pei Xule,Zhang Tong,Zhong Jingyi,Chen Zaihao,Jiang Chuanjia & Chen Wei.(2021).Substoichiometric titanium oxide Ti2O3 exhibits greater efficiency in enhancing hydrolysis of 1,1,2,2-tetrachloroethane than TiO2 nanomaterials.Science of the Total Environment145705-145705.Search in Google Scholar