Acta Optica Sinica, Volume. 40, Issue 18, 1831001(2020)

In-Situ Electrochemical-Photoreduction Synthesis and Photocatalytic Performance of Pd/BiF3 Thin Films

Ruigang Hao1、*, Xiangpeng Kong2, Zu Zhao3, and Xiaochao Zhang3、**
Author Affiliations
  • 1Department of Environmental and Safety Engineering, Taiyuan Institute of Technology, Taiyuan, Shanxi 0 30008, China
  • 2Department of Chemistry and Chemical Engineering, Taiyuan Institute of Technology, Taiyuan, Shanxi 0 30008, China
  • 3College of Chemistry and Chemical Engineering, Taiyuan University of Technology, Taiyuan, Shanxi 0 30024, China
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    References(19)

    [1] Shi W L, Ren H J, Huang X L et al. Low cost red mud modified graphitic carbon nitride for the removal of organic pollutants in wastewater by the synergistic effect of adsorption and photocatalysis[J]. Separation and Purification Technology, 237, 116477(2020).

    [2] Zhang K, Liu C, Huang F et al. Study of the electronic structure and photocatalytic activity of the BiOCl photocatalyst[J]. Applied Catalysis B: Environmental, 68, 125-129(2006).

    [3] Zhao Z, Li R, Zhang X C et al. Electrochemical in situ synthesis and photocatalytic properties of BiF3 thin films[J]. Chemical Journal of Chinese Universities, 39, 1775-1781(2018).

    [5] Meng X C, Li Z Z, Chen J et al. Enhanced visible light-induced photocatalytic activity of surface-modified BiOBr with Pd nanoparticles[J]. Applied Surface Science, 433, 76-87(2018).

    [6] Yu C L, Cao F F, Li G et al. Novel noble metal (Rh, Pd, Pt)/BiOX(Cl, Br, I) composite photocatalysts with enhanced photocatalytic performance in dye degradation[J]. Separation and Purification Technology, 120, 110-122(2013).

    [8] Zhang S J, Chen X X, Song L M. Preparation of BiF3/BiOBr heterojunctions from microwave-assisted method and photocatalytic performances[J]. Journal of Hazardous Materials, 367, 304-315(2019).

    [9] Yang Y, Teng F, Kan Y D et al. Investigation of the charges separation and transfer behavior of BiOCl/BiF3 heterojunction[J]. Applied Catalysis B: Environmental, 205, 412-420(2017).

    [10] Di J, Xia J X, Yin S et al. Reactable ionic liquid assisted synthesis of Pd modified BiOBr flower-like microsphere with high dispersion and their enhanced photocatalytic performances[J]. Materials Technology, 30, 113-121(2015).

    [13] Meng X C, Li Z Z, Zhang Z S. Highly efficient degradation of phenol over a Pd-BiOBr Mott-Schottky plasmonic photocatalyst[J]. Materials Research Bulletin, 99, 471-478(2018).

    [15] Langhammer C, Yuan Z, Zoric I et al. Plasmonic properties of supported Pt and Pd nanostructures[J]. Nano Letters, 6, 833-838(2006).

    [18] Guo W, Qin Q, Geng L et al. Morphology-controlled preparation and plasmon-enhanced photocatalytic activity of Pt-BiOBr heterostructures[J]. Journal of Hazardous Materials, 308, 374-385(2016).

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    Ruigang Hao, Xiangpeng Kong, Zu Zhao, Xiaochao Zhang. In-Situ Electrochemical-Photoreduction Synthesis and Photocatalytic Performance of Pd/BiF3 Thin Films[J]. Acta Optica Sinica, 2020, 40(18): 1831001

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    Paper Information

    Category: Thin Films

    Received: Mar. 25, 2020

    Accepted: Jun. 3, 2020

    Published Online: Aug. 28, 2020

    The Author Email: Hao Ruigang (tyhaorg@163.com), Zhang Xiaochao (zhangxiaochao@tyut.edu.cn)

    DOI:10.3788/AOS202040.1831001

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