[ 1 ] Wang J, Wang S. A critical review on graphitic carbon nitride (g - C 3N 4)-based materials: preparation, modification and environmental application[J]. Coordination Chemistry Reviews, 2022, 453: 214338. [2]Hayat A, Sohail M, Ali Shah Syed J, et al. Recent advancement of the current aspects of g-C 3N 4 for its photocatalytic applications in sustainable energy system[J]. Chemical Record, 2022, 22(7): e202100310. [3]Chensi Tang, Min Cheng, Cui Lai, et al. Recent progress in the applications of non-metal modified graphitic carbon nitride in photocatalysis[J]. Coordination Chemistry Reviews, 2023, 474: 214846.Tang C, Cheng M, Lai C, et al. Recent progress in the applications of non-metal modified graphitic carbon nitride in photocatalysis[J]. Coordination Chemistry Reviews, 2023, 474: 214846. [4]牛凤延, 何齐升, 李德恒, 等. g-C 3N 4基材料光催化分解水产氢的研究进展[J]. 中国陶瓷, 2023, 59(1): 13-20. [5]Sohail M, Altalhi T, Al-Sehemi A GSehemi A A, et al. Nanostructure engineering via intramolecular construction of carbon nitride as efficient photocatalyst for CO 2 reduction[J]. Nanomaterials, 2021, 11(12): 3245. [6]逯亚博, 刘祥萱, 杨玉雪, 等. g-C 3N 4/TiO 2纳米棒阵列薄膜的制备及光催化性能研究[J]. 化工新型材料, 2021, 49(8): 202-206. [7]武世然, 王岳, 王毅, 等. 石墨相氮化碳基光催化材料的研究进展[J]. 中国陶瓷, 2022, 58(1): 1-6. [8]李会鹏, 孙新宇, 赵华, 等. 反蛋白石结构光催化剂的制备与应用进展[J]. 分子催化, 2021, 35(1): 65-75. [9]Guo F, Chen Z, Shi Y, et al. A ragged porous hollow tubular carbon nitride towards boosting visible-light photocatalytic hydrogen production in water and seawater[J]. Renewable Energy, 2022, 188: 1-10. [10]Alaghmandfard A, Ghandi K. A comprehensive review of graphitic carbon nitride(g-C 3N 4)-metal oxide-based nanocomposites: potential for photocatalysis and sensing[J]. Nanomaterials, 2022, 12(2): 294.