Publications: Papers: [1] Song Y.L., et al. One–step synthesis of sheet–like ZnIn2S4 with exposed (110) facet for efficient reduction of Cr(VI) under visible light [J]. Journal of Alloys and Compounds, 2025, 1025: 180316. [2] Song Y.L., et al. Novel construction of Z–scheme g–C3N4/PDI organic photocatalyst for excellent sulfamethoxazole degradation rate in water [J]. Journal of Environmental Chemical Engineering, 2025, 13: 118371. [3] Song Y.L., et al.Facile synthesis method of C self-doped g-C3N4 and its performance in photodegradation of sulfamethoxazole[J]. Separation and Purification Technology, 2024, 338: 126548. [4] Song Y.L., et al.Enhancing the photocatalytic efficiency of sulfamethoxazole by regulating the band gap structure of g-C3N4 through phosphorus element doping[J]. Journal of Water Process Engineering, 2024, 58: 104936. [5] Song Y.L., et al. Study on optimum preparation conditions of ZnIn2S4 to effectively reduce Cr(VI) under visible light radiation[J]. Catalysts, 2022, 12: 1429. [6] Song Y.L., et al. Synergistic effect of persulfate and g-C3N4 under simulated solar light irradiation implication for the degradation of sulfamethoxazole [J]. Journal of Hazardous Materials, 2020, 393: 122379. [7] Song Y.L., et al. Construction of Ag/g-C3N4 composites with uniform-sized Ag nanoparticles and the application for sulfisoxazole degradation in the presence of visible radiation[J]. Journal of Environmental Chemical Engineering, 2020, 8: 104390. [8] Song Y.L., et al. Photodegradation of Sulfonamides by g-C3N4 under Visible Light Irradiation: Effectiveness, Mechanism and Pathways [J]. Applied Catalysis B: Environmental, 2017, 210(5):88-96. [9] Song Y.L., et al. Construction of Ag/g-C3N4 photocatalysts with visible-light photocatalytic activity for sulfamethoxazole degradation [J]. Chemical Engineering Journal, 2018, 341:547-555. [10] Song Y.L., et al. One-step hydrothermal synthesis of ZnO hollow nanospheres uniformly grown on graphene for enhanced photocatalytic performance [J]. Ceramics International, 2016, 42(1):2074-2078. [11] Chong S, Song Y.L., et al. Enhanced degradation of nitrobenzene by combined ultrasonic irradiation and a zero-valent zinc catalyst [J]. Desalination and Water Treatment, 2016, 57(50): 23856-23863 [12] Chong S, Song Y.L., et al. Ultrasound/Zn0 for aqueous 4-nitrobenzoic acid degradation [J]. Desalination and Water Treatment, 2016(52):1-9. [13] Song Y.L., et al. Research progress of non-metallic element doped graphitic carbon nitride photocatalytic materials [J]. Chemical Industry and Engineering Progress, 2023, 42(10), 5299-5309. [14] Song Y.L., et al. Types, sources, effect and removal of microplastic in aqueous environment [J]. plastic, 2023, 52(2), 72-76+133. [15] Song Y.L., et al.Degradation effect and mechanism of sulfamerazine by Ag/g-C3N4 under visible light irradiation[J]. Journal of Light Industry, 2021, 12 (36): 102-109. [16] Song Y.L., et al.. Performance and mechanism of visible-light photodegradation of sulfamethoxazole by Ag/g-C3N4 [J]. Chinese Journal of Environmental Engineering, 2018, 12(11): 3079-3089. [17] Song Y.L., et al.. Degradation of p-nitrobenzoic acid by US /Zn0 system [J]. Chinese Journal of Environmental Engineering, 2014, 8(5):1797-1801. [18] Song Y.L., et al.. Degradation of p-nitroaniline by ultrasound combined with zero zinc[J]. Environmental Science & Technology, 2013, 36(6L):163-166. Patents: [1]P-doped g-C3N4 photocatalyst with sheet structure and the preparation method, ZL 202111117317.X. [2]Preparation of lamellar indium zinc sulfide photocatalyst with high reducing activity, ZL 202011540139.7. [3]Preparation of ZnO hollow sphere/ graphene composite photocatalyst, ZL 201510194039.6. |