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354 工程科学学报,第43卷,第3期 (陈彰旭,郑炳云,李先学,等.模板法制备纳米材料研究进展 [43]Wang P Y,Guo C S,Hou S,et al.Template-free synthesis of 化工进展,2010,29(1):94) bubble-like phosphorus-doped carbon nitride with enhanced [29]Xu J,Shen K,Xue B,et al.Synthesis of three-dimensional meso- visible-light photocatalytic activity.J Alloys Compd,2018,769: structured graphitic carbon nitride materials and their application 503 as heterogeneous catalysts for knoevenagel condensation reactions. 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One-pot synthesis of porous g￾C3N4 nanomaterials with different morphologies and their superior photocatalytic performance. Mater Res Bull, 2018, 102: 209 [33] Yan H J. Soft-templating synthesis of mesoporous graphitic carbon nitride with enhanced photocatalytic H2 evolution under visible light. Chem Commun, 2012, 48(28): 3430 [34] Chen Y Z, Li W H, Jiang D J, et al. Facile synthesis of bimodal macroporous g-C3N4 /SnO2 nanohybrids with enhanced photocatalytic activity. Chin Sci Bull, 2019, 64(1): 44 [35] Panneri S, Ganguly P, Nair B N, et al. Role of precursors on the photophysical properties of carbon nitride and its application for antibiotic degradation. Environ Sci Pollut Res, 2017, 24(9): 8609 [36] Li F X, Xiao X D, Zhao C, et al. TiO2 -on-C3N4 double-shell microtubes: In-situ fabricated heterostructures toward enhanced photocatalytic hydrogen evolution. J Colloid Interface Sci, 2020, 572: 22 [37] Kota M, Yu X, Yeon S H, et al. 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Template-free synthesis of bubble-like phosphorus-doped carbon nitride with enhanced visible-light photocatalytic activity. J Alloys Compd, 2018, 769: 503 [43] Xu Q L, Ma D K, Yang S B, et al. Novel g-C3N4 /g-C3N4 S-scheme isotype heterojunction for improved photocatalytic hydrogen generation. Appl Surf Sci, 2019, 495: 143555 [44] Muhammad A, Tahir M, Al-Shahrani S S, et al. Template free synthesis of graphitic carbon nitride nanotubes mediated by lanthanum (La/g-CNT) for selective photocatalytic CO2 reduction via dry reforming of methane (DRM) to fuels. Appl Surf Sci, 2020, 504: 144177 [45] Luo B, Song R, Geng J F, et al. Strengthened spatial charge separation over Z-scheme heterojunction photocatalyst for efficient photocatalytic H2 evolution. Appl Surf Sci, 2019, 475: 453 [46] Elbanna O, Fujitsuka M, Majima T. g-C3N4 /TiO2 mesocrystals composite for H2 evolution under visible-light irradiation and its charge carrier dynamics. ACS Appl Mater Interfaces, 2017, 9(40): 34844 [47] Zhao S, Zhang Y W, Zhou Y M, et al. Facile one-step synthesis of hollow mesoporous g-C3N4 spheres with ultrathin nanosheets for photoredox water splitting. Carbon, 2018, 126: 247 [48] Dai X H, Han Z W, Waterhouse G I N, et al. Ordered graphitic carbon nitride tubular bundles with efficient electron-hole separation and enhanced photocatalytic performance for hydrogen generation. Appl Catal A, 2018, 566: 200 [49] Li Y D, Jiang Y Q, Ruan Z H, et al. Simulation-guided synthesis of graphitic carbon nitride beads with 3D interconnected and continuous meso/macropore channels for enhanced light absorption and photo-catalytic performance. J Mater Chem A, 2017, 5: 21300 [50] Jiang D L, Zhu J J, Chen M, et al. Highly efficient heterojunction photocatalyst based on nanoporous g-C3N4 sheets modified by Ag3PO4 nanoparticles: Synthesis and enhanced photocatalytic activity. J Colloid Interface Sci, 2014, 417: 115 [51] Wei H, McMaster W A, Tan J Z Y, et al. Tricomponent brookite/anatase TiO2 /g-C3N4 heterojunction in mesoporous hollow microspheres for enhanced visible-light photocatalysis. J Mater Chem A, 2018, 6(16): 7236 [52] Xu J, Wang Z P, Zhu Y F. Enhanced visible-light-driven photocatalytic disinfection performance and organic pollutant degradation activity of porous g-C3N4 nanosheets. ACS Appl Mater Interfaces, 2017, 9(33): 27727 [53] Jourshabani M, Shariatinia Z, Badiei A. High efficiency visible￾light-driven Fe2O3−xSx /S-doped g-C3N4 heterojunction photo￾catalysts: Direct Z-scheme mechanism. J Mater Sci Technol, 2018, 34(9): 1511 [54] Qi Y R, Liang Q H, Lü R T, et al. Synthesis and photocatalytic activity of mesoporous g-C3N4 /MoS2 hybrid catalysts. R Soc Open Sci, 2018, 5(5): 180187 [55] · 354 · 工程科学学报,第 43 卷,第 3 期
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