首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Visible light-driven photoelectrocatalytic degradation of acid yellow 17 using Sn3O4 flower-like thin films supported on Ti substrate (Sn3O4/TiO2/Ti)
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Visible light-driven photoelectrocatalytic degradation of acid yellow 17 using Sn3O4 flower-like thin films supported on Ti substrate (Sn3O4/TiO2/Ti)

机译:使用SN3O4花状薄膜在Ti底板上使用SN3O4花朵薄膜(SN3O4 / TiO2 / Ti)的可见光光驱动光电催化剂降解酸黄17

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摘要

This article reports a new method for preparing mixed valence tin oxide (Sn3O4) flower-like nanostructures using a microwave-assisted route. Thin-film Sn3O4/TiO2/Ti electrodes demonstrated highly efficient visible light driven photocatalytic degradation of monoazo acid yellow 17 (AY17) dye, reaching 95% color removal after 60 min at pH 2. Moreover, under low bias potential (0.5 V), the photoelectrocatalytic efficiency increased to 97% color removal and 83% removal of total organic carbon at a kinetic rate almost 3-fold higher than in photocatalysis. Liquid chromatography mass spectrometry was used to identify intermediate formation, and oxidation performance was proposed for photocatalytic and photoelectrocatalytic degradation with no organics identified after 120 min of treatment. The results indicate that Sn3O4/TiO2/Ti photoelectrodes offer a simple, green method for wastewater treatment employing visible light source.
机译:本文报道了一种使用微波辅助途径制备制备混合价氧化锡(SN3O4)花状纳米结构的新方法。 薄膜SN3O4 / TiO2 / Ti电极显示出高效的可见光触发光催化的单氮酸黄色17(AY17)染料,在pH 2下达到95%的颜色去除。此外,在低偏压(0.5V)下, 光电催化效率升高至97%的颜色去除率和83%以比光催化在光催化高出3倍的情况下除去总有机碳。 液相色谱质谱法用于鉴定中间体形成,并提出了氧化性能,用于光催化和光电催化降解,无需在120分钟后发现的有机物。 结果表明,SN3O4 / TiO2 / TI光电系列用于采用可见光源的废水处理提供简单的绿色方法。

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