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首页> 外文期刊>RSC Advances >Fabrication of Ag2O/WO3 p-n heterojunction composite thin films by magnetron sputtering for visible light photocatalysis
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Fabrication of Ag2O/WO3 p-n heterojunction composite thin films by magnetron sputtering for visible light photocatalysis

机译:通过磁控溅射制备Ag2O / WO3 P-N异质结复合薄膜,可见光光催化

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摘要

Semiconductor-based nanostructures which are photo-catalytically active upon solar light irradiation were extensively used for environmental remediation due to the potential decomposition of various kinds of pollutants. In this work, we report the preparation of a sustainable thin film composite, i.e. Ag2O/WO3 p-n heterojunction, and investigation of its photocatalytic activity. To achieve the composite structure, WO3/Ag-WO3 layers were deposited over a quartz substrate by magnetron sputtering at room temperature and subsequently annealed at 823 to 923 K. The thin film structure, morphology, and chemical states were thoroughly characterized by X-ray diffraction, field-emission scanning electron microscopy, transmission electron spectroscopy, and X-ray photoelectron spectroscopy. The obtained results revealed that the amorphous Ag-doped WO3 was crystallized into monoclinic WO3 and Ag2O, in which nanocrystalline Ag2O was diffused towards the surface of WO3. Optical transmittance spectra recorded by UV-vis-NIR spectroscopy revealed that the WO3/Ag-WO3 films became transparant in the visible region after annealing at high temperature (873 K and 923 K). The Ag2O/WO3 p-n heterojunction composite thin films showed high photocatalytic activity (0.915 x 10(-3) min(-1)) under visible light irradiation, which is attributed to the efficiency of effective photogenerated charge-carrier formation and the reduced recombination rate of photogenerated electron-hole pairs. Unlike the powder-based photocatalysts, the reported thin film-based heterojunction photocatalyst could be very sustainable, and cost-effective.
机译:由于各种污染物的潜在分解,在太阳光照射时为光催化活性的基于半导体的纳米结构被广泛用于环境修复。在这项工作中,我们报告了制备可持续薄膜复合材料,即Ag2O / WO3 P-N异质结,以及其光催化活性的研究。为了实现复合结构,通过在室温下通过磁控溅射在石英底物上沉积WO3 / Ag-WO3层,随后在823至923k下退火。通过X射线彻底以薄膜结构,形态和化学品彻底表征薄膜结构,形态和化学状态衍射,现场 - 发射扫描电子显微镜,透射电子光谱和X射线光电子谱。所得结果表明,无定形的Ag掺杂的WO3结晶到单斜晶型WO3和Ag 2 O中,其中纳米晶体Ag2O朝向WO3的表面扩散。通过UV-Vis-Nir光谱记录的光学透射光谱显示,在高温(873k和923k)下退火后,WO3 / Ag-WO3膜在可见区域中变成了变形。 Ag2O / WO3 PN异质结复合薄膜在可见光照射下显示出高的光催化活性(0.915×10(-3)min(-1)),归因于有效光发液电荷载体形成的效率和减少的重组率光发电电子孔对。与粉末的光催化剂不同,报告的薄膜的异质结光催化剂可能是非常可持续的,并且具有成本效益。

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  • 来源
    《RSC Advances》 |2020年第27期|共9页
  • 作者单位

    Kongju Natl Univ Smart Nat Space Res Ctr Dept Adv Mat Engn Cheonan 31080 South Korea;

    Kongju Natl Univ Smart Nat Space Res Ctr Dept Adv Mat Engn Cheonan 31080 South Korea;

    Kongju Natl Univ Smart Nat Space Res Ctr Dept Adv Mat Engn Cheonan 31080 South Korea;

    Kongju Natl Univ Dept Comp Sci &

    Engn Cheonan 331717 South Korea;

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  • 正文语种 eng
  • 中图分类 化学;
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