The Journal of Light Scattering, Volume. 34, Issue 2, 127(2022)
Fabrication of Tungsten Oxide Phase Junction and Its Photocatalytic performance
[1] [1] Solpan D, Guven O. Decoloration and degradation of some textile dyes by gamma irradiation[J]. Radiation Physics and Chemistry, 2002, 65(4-5): 549-558.
[2] [2] Luo W D, Hu F P, Hu Y Y, et al. Persulfate enhanced visible light photocatalytic degradation of organic pollutants by construct magnetic hybrid heterostructure[J]. Journal of alloys and compounds, 2019, 806: 1207-1219.
[3] [3] Han F, Kambala V S R, Srinivasan M, et al. Tailored titanium dioxide photocatalysts for the degradation of organic dyes in wastewater treatment: a review[J]. Applied Catalysis A-general, 2009, 359(1-2): 25-40.
[5] [5] Vorontsov A V. Advancing Fenton and photo-Fenton water treatment through the catalyst design[J]. Journal of Hazardous Materials, 2019, 372: 103-112.
[7] [7] Wen Y Y, Ding H M, Shan Y K. Preparation and visible light photocatalytic activity of Ag/TiO2/graphene nanocomposite[J]. Nanoscale, 2011, 3(10): 4411-4417.
[8] [8] Sun J J, Li X Y, Zhao Q D, et al. Construction of p-n heterojunction β-Bi2O3/BiVO4 nanocomposite with improved photoinduced charge transfer property and enhanced activity in degradation of ortho-dichlorobenzene[J]. Applied Calysis B-environmental, 2017, 219: 259-268.
[9] [9] Zhou W J, Yin Z Y, Du Y P, et al. Synthesis of few-layer MoS2 nanosheet-coated TiO2 nanobelt heterostructures for enhanced photocatalytic activities[J]. Small, 2013, 9(1): 140-147.
[10] [10] Zhang J, Xu Q, Feng Z C, et al. Importance of the relationship between surface phases and photocatalytic activity of TiO2[J]. Angewandte Chemie, 2008, 120(9): 1790-1793.
[11] [11] Zhang X, Li C, Liang J M, et al. Self-templated constructing of heterophase junction into hierarchical porous structure of semiconductors for promoting photogenerated charge separation[J]. ChemCatChem, 2020, 12(4): 1212-1219.
[12] [12] Li L, Krissanasaeranee M, Pattinson S W, et al. Enhanced photocatalytic properties in well-ordered mesoporous WO3[J]. Chemial Communications, 2010, 46(40): 7620-7622.
[13] [13] Jothivenkatachalam K, Prabhu S, Nithya A, et al. Facile synthesis of WO3 with reduced particle size on zeolite and enhanced photocatalytic activity[J]. Rsc Advances, 2014, 4(41): 21221-21229.
[14] [14] Liu X, Wang F Y, Wang Q. Nanostructure-based WO3 photoanodes for photoelectrochemical water splitting[J]. Physical Chemistry Chemical Physics, 2012, 14(22): 7894-7911.
[15] [15] Liu D X, Zhang J, Li C, et al. In-situ fabrication of atomic charge transferring path for constructing heterojunction photocatalysts with hierarchical structure[J]. Applied Catahysis B-environmental, 2019, 248: 459-465.
[16] [16] Chen S F, Chen L, Shen G, et al. The preparation of coupled WO3/TiO2 photocatalyst by ball milling[J]. Powder Tochnology, 2005, 160(3): 198-202.
[17] [17] Zheng J J, Chang F, Jiao M Z, et al. A visible-light-driven heterojuncted composite WO3/Bi12O17Cl2: synthesis, characterization, and improved photocatalytic performance[J]. Journal Of Colloid And Interface Science, 2018, 510: 20-31.
[18] [18] Kong Y Q, Sun H G, Zhao X, et al. Fabrication of hexagonal/cubic tungsten oxide homojunction with improved photocatalytic activity[J]. Applied Catahysis A-general, 2015, 505: 447-455.
[19] [19] Zheng L R, Zheng Y H, Chen C Q, et al. Network structured SnO2/ZnO heterojunction nanocatalyst with high photocatalytic activity[J]. Inorganic Chemistry, 2009, 48(5): 1819-1825.
[20] [20] Lu Y Y, Liu G, Zhang J, et al. Fabrication of a monoclinic/hexagonal junction in WO3 and its enhanced photocatalytic degradation of rhodamine B[J]. Chinese Journal of Catalysis, 2016, 37(3): 349-358.
[21] [21] Chen R T, Fan F T, Dittrich T, et al. Imaging photogenerated charge carriers on surfaces and interfaces of photocatalysts with surface photovoltage microscopy[J]. Chemical Socicty Reviews, 2018, 47(22): 8238-8262.
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HAN Qirui, KANG Mingliang, CHEN Xuebing, ZHANG Jing. Fabrication of Tungsten Oxide Phase Junction and Its Photocatalytic performance[J]. The Journal of Light Scattering, 2022, 34(2): 127
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Received: Apr. 13, 2021
Accepted: --
Published Online: Feb. 4, 2023
The Author Email: Qirui HAN (921440693@qq.com)