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679 related items for PubMed ID: 34749145
1. In situ fabrication of niobium pentoxide/graphitic carbon nitride type-II heterojunctions for enhanced photocatalytic hydrogen evolution reaction. Dong Q, Chen Z, Zhao B, Zhang Y, Lu Z, Wang X, Li J, Chen W. J Colloid Interface Sci; 2022 Feb 15; 608(Pt 2):1951-1959. PubMed ID: 34749145 [Abstract] [Full Text] [Related]
2. Electrospinning preparation of g-C3N4/Nb2O5 nanofibers heterojunction for enhanced photocatalytic degradation of organic pollutants in water. Wang L, Li Y, Han P. Sci Rep; 2021 Nov 25; 11(1):22950. PubMed ID: 34824312 [Abstract] [Full Text] [Related]
3. Constructing Multifunctional Metallic Ni Interface Layers in the g-C3N4 Nanosheets/Amorphous NiS Heterojunctions for Efficient Photocatalytic H2 Generation. Wen J, Xie J, Zhang H, Zhang A, Liu Y, Chen X, Li X. ACS Appl Mater Interfaces; 2017 Apr 26; 9(16):14031-14042. PubMed ID: 28368111 [Abstract] [Full Text] [Related]
4. Preparation and enhanced visible-light photocatalytic activity of graphitic carbon nitride/bismuth niobate heterojunctions. Zhang S, Yang Y, Guo Y, Guo W, Wang M, Guo Y, Huo M. J Hazard Mater; 2013 Oct 15; 261():235-45. PubMed ID: 23933291 [Abstract] [Full Text] [Related]
5. Nitrogen vacancy induced in situ g-C3N4 p-n homojunction for boosting visible light-driven hydrogen evolution. Liao Y, Wang G, Wang J, Wang K, Yan S, Su Y. J Colloid Interface Sci; 2021 Apr 15; 587():110-120. PubMed ID: 33360883 [Abstract] [Full Text] [Related]
6. Type-II/type-II band alignment to boost spatial charge separation: a case study of g-C3N4 quantum dots/a-TiO2/r-TiO2 for highly efficient photocatalytic hydrogen and oxygen evolution. Zhou BX, Ding SS, Wang Y, Wang XR, Huang WQ, Li K, Huang GF. Nanoscale; 2020 Mar 12; 12(10):6037-6046. PubMed ID: 32129406 [Abstract] [Full Text] [Related]
7. Graphitic Carbon Nitride Nanosheets Decorated with Zinc-Cadmium Sulfide for Type-II Heterojunctions for Photocatalytic Hydrogen Production. Yousaf AB, Imran M, Farooq M, Kausar S, Yasmeen S, Kasak P. Nanomaterials (Basel); 2023 Sep 21; 13(18):. PubMed ID: 37764638 [Abstract] [Full Text] [Related]
8. Molybdenum disulfide loading on a Z-scheme graphitic carbon nitride and lanthanum nickelate heterojunction for enhanced photocatalysis: Interfacial charge transfer and mechanistic insights. Bao J, Jiang X, Huang L, Quan W, Zhang C, Wang Y, Wang H, Zeng Y, Zhang W, Ma Y, Yu S, Hu X, Tian H. J Colloid Interface Sci; 2022 Apr 21; 611():684-694. PubMed ID: 34974228 [Abstract] [Full Text] [Related]
9. 2D-2D heterostructure g-C3N4-based materials for photocatalytic H2 evolution: Progress and perspectives. Mehmood R, Ahmad Z, Hussain MB, Athar M, Akbar G, Ajmal Z, Iqbal S, Razaq R, Ali MA, Qayum A, Chishti AN, Zaman FU, Shah R, Zaman S, Adnan. Front Chem; 2022 Apr 21; 10():1063288. PubMed ID: 36578353 [Abstract] [Full Text] [Related]
10. Facile in situ synthesis of plasmonic nanoparticles-decorated g-C3N4/TiO2 heterojunction nanofibers and comparison study of their photosynergistic effects for efficient photocatalytic H2 evolution. Wei X, Shao C, Li X, Lu N, Wang K, Zhang Z, Liu Y. Nanoscale; 2016 Jun 07; 8(21):11034-43. PubMed ID: 27174531 [Abstract] [Full Text] [Related]
11. Hydrothermal synthesis of In2S3/g-C3N4 heterojunctions with enhanced photocatalytic activity. Xing C, Wu Z, Jiang D, Chen M. J Colloid Interface Sci; 2014 Nov 01; 433():9-15. PubMed ID: 25093943 [Abstract] [Full Text] [Related]
12. Powerful combination of g-C3N4 and LDHs for enhanced photocatalytic performance: A review of strategy, synthesis, and applications. Song B, Zeng Z, Zeng G, Gong J, Xiao R, Ye S, Chen M, Lai C, Xu P, Tang X. Adv Colloid Interface Sci; 2019 Oct 01; 272():101999. PubMed ID: 31421455 [Abstract] [Full Text] [Related]
13. Au/PtO nanoparticle-modified g-C3N4 for plasmon-enhanced photocatalytic hydrogen evolution under visible light. Jiang J, Yu J, Cao S. J Colloid Interface Sci; 2016 Jan 01; 461():56-63. PubMed ID: 26397910 [Abstract] [Full Text] [Related]
14. Fabrication of a Perylene Tetracarboxylic Diimide-Graphitic Carbon Nitride Heterojunction Photocatalyst for Efficient Degradation of Aqueous Organic Pollutants. Wang X, Meng J, Yang X, Hu A, Yang Y, Guo Y. ACS Appl Mater Interfaces; 2019 Jan 09; 11(1):588-602. PubMed ID: 30525420 [Abstract] [Full Text] [Related]
15. Photocatalytic Hydrogen Production from Pure Water Using a IEF-11/g-C3N4 S-Scheme Heterojunction. Qian A, Han X, Liu Q, Fan M, Ye L, Pu X, Chen Y, Liu J, Sun H, Zhao J, Ling H, Wang R, Li J, Jia X. ChemSusChem; 2024 Mar 22; 17(6):e202301538. PubMed ID: 38376216 [Abstract] [Full Text] [Related]
16. Sandwich-like mesoporous graphite-like carbon nitride (Meso-g-C3N4)/WP/Meso-g-C3N4 laminated heterojunctions solar-driven photocatalysts. Yang Z, Xing Z, Feng Q, Jiang H, Zhang J, Xiao Y, Li Z, Chen P, Zhou W. J Colloid Interface Sci; 2020 May 15; 568():255-263. PubMed ID: 32092554 [Abstract] [Full Text] [Related]
17. Rational fabrication of cadmium-sulfide/graphitic-carbon-nitride/hematite photocatalyst with type II and Z-scheme tandem heterojunctions to promote photocatalytic carbon dioxide reduction. Huang M, Wang T, Wu Z, Shang Y, Zhao Y, Li B. J Colloid Interface Sci; 2022 Dec 15; 628(Pt B):129-140. PubMed ID: 35987152 [Abstract] [Full Text] [Related]
18. Amorphous Bimetallic Cobalt Nickel Sulfide Cocatalysts for Significantly Boosting Photocatalytic Hydrogen Evolution Performance of Graphitic Carbon Nitride: Efficient Interfacial Charge Transfer. Jiang L, Wang K, Wu X, Zhang G, Yin S. ACS Appl Mater Interfaces; 2019 Jul 31; 11(30):26898-26908. PubMed ID: 31268294 [Abstract] [Full Text] [Related]
19. Fabrication of graphitic carbon Nitride/Nonstoichiometric molybdenum oxide nanorod composite with the nonmetal plasma enhanced photocatalytic hydrogen evolution activity. Huang Z, Liu J, Zong S, Wang X, Chen K, Liu L, Fang Y. J Colloid Interface Sci; 2022 Jan 15; 606(Pt 1):848-859. PubMed ID: 34425272 [Abstract] [Full Text] [Related]
20. Improved Visible-Light Photocatalytic H2 Evolution of G-C3N4 Nanosheets by Constructing Heterojunctions with Nano-Sized Poly(3-Thiophenecarboxylic Acid) and Coordinating Fe(III). Li Y, Zhang B, Pang X, Li Z, Zhang Y, Hao M, Zhu Y, Qin C, Jing L. Nanomaterials (Basel); 2023 Apr 12; 13(8):. PubMed ID: 37110923 [Abstract] [Full Text] [Related] Page: [Next] [New Search]