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首页> 外文期刊>Chemicke Zvesti >Structural transformation of Ag_3PO_4 and Ag_3PO_4/ TiO_2 induced by visible light and Cl- ions: its impact on their photocatalytic, antimicrobial, and antifungal performance
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Structural transformation of Ag_3PO_4 and Ag_3PO_4/ TiO_2 induced by visible light and Cl- ions: its impact on their photocatalytic, antimicrobial, and antifungal performance

机译:Ag_3PO_4和AG_3PO_4 / TiO_2由可见光和电压诱导的AG_3PO_4和AG_3PO_4 / TIO_2的结构转型:其对光催化,抗菌和抗真菌性能的影响

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摘要

In this work, synthesis of Ag_3PO_4 and its composite with TiO_2 ( Ag_3PO_4/TiO_2) toward study of two phenomena naturally occurring in Ag_3PO_4 is reported, specifically a visible light-driven (i.e., photocorrosion) and chloride ion-driven transformation of Ag_3PO_4 to AgCl in chloride-free and chloride-present aqueous solution. A deeper insight on this transformation via study of their structural and morphological changes using X-ray diffractometry (XRD), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS) is performed. Substantial amount of AgCl is detected in both Ag_3PO_4-based materials after visible light irradiation in chloride-present environment. This led to an increase in optical band gap of Ag_3PO_4 and Ag_3PO_4/ TiO_2 from 2.52 to 2.99 eV and 2.48 to 3.02 eV, respectively. Impact of these structural changes in Ag_3PO_4 and Ag_3PO_4/ TiO_2 on their photocatalytic activity is evaluated from the photoinduced catalytic, antibacterial, and antifungal performance under visible light irradiation. The photocatalytic activity of pristine and photocorroded Ag_3PO_4 is increased by ~ 10 times compared to that of pristine and photocorroded Ag_3PO_4/ TiO_2. Photocorroded Ag_3PO_4 and Ag_3PO_4/ TiO_2 possess minor antibacterial and antifungal activities (cell survival ~ 90%), whereas using pristine Ag_3PO_4 and Ag_3PO_4/ TiO_2 the cell survival is reduced by 100% after 60 and 120 min, respectively.
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著录项

  • 来源
    《Chemicke Zvesti》 |2020年第9期|共13页
  • 作者单位

    Department of Inorganic Chemistry Faculty of Natural Sciences Comenius University Ilkovicova 6 842 15 Bratislava Slovakia;

    Center of Materials and Nanotechnologies Faculty of Chemical Technology University of Pardubice Nam. Cs. Legii 565 530 02 Pardubice Czech Republic;

    Department of Microbiology Faculty of Medicine Wroclaw Medical University 50 368 Wroclaw Poland;

    Department of Experimental Physics Faculty of Mathematics Physics and Informatics Comenius University Mlynska Dolina 842 48 Bratislava Slovakia;

    Department of Experimental Physics Faculty of Mathematics Physics and Informatics Comenius University Mlynska Dolina 842 48 Bratislava Slovakia;

    Department of Experimental Physics Faculty of Mathematics Physics and Informatics Comenius University Mlynska Dolina 842 48 Bratislava Slovakia;

    Department of Microbiology Faculty of Medicine Wroclaw Medical University 50 368 Wroclaw Poland;

    Department of Inorganic Chemistry Faculty of Natural Sciences Comenius University Ilkovicova 6 842 15 Bratislava Slovakia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

    Photocatalysis; Antimicrobial; Antifungal; Photocorrosion; Ag_3PO_4; TiO_2; AgCl;

    机译:光催化;抗菌剂;抗真菌;光腐蚀;AG_3PO_4;TiO_2;AGCL;

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