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CdS particles modified TiO2 coatings formed by plasma electrolytic oxidation with enhanced photocatalytic activity

机译:CDS颗粒通过增强的光催化活性通过等离子体电解氧化而改性TiO2涂层

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摘要

CdS particles modified anatase TiO2 photocatalysts were formed on titanium substrate by plasma electrolytic oxidation for 2 min in supporting electrolyte (10 g/L Na-3 center dot PO4 center dot 12H(2)O) with addition of CdS particles in concentrations up to 8 g/L. Content of CdS particles incorporated into TiO2 coatings depends of CdS particles concentration in supporting electrolyte, while surface morphology, phase structure and absorption properties of formed coatings were not significantly influenced by the addition of CdS particles. In contrast to pure TiO2 coatings, TiO2/CdS coatings exhibit enhanced photocatalytic activity (PA) in the degradation of methyl orange, used as a model organic pollutant, under simulated solar irradiation. The highest PA was observed for TiO2/CdS coating formed in supporting electrolyte with addition of 0.4 g/L of CdS particles. Photoluminescence measurements indicate that enhanced PA is related to the reduction of the recombination rate of photogenerated electron/hole pairs as a result of TiO2 and CdS coupling.
机译:CDS颗粒通过等离子体电解氧化在锂基板上在支撑电解质(10g / L Na-3中心点Po4中心点12h(2)o)中的浓度高达8的颗粒(10g / L Na-3中心点Po4中心点12h(2)),在钛基板上形成光催化剂。 g / l。掺入TiO 2涂层中的CDS颗粒的含量取决于CDS颗粒浓度在载体电解质中,而形成涂层的表面形态,相结构和吸收性能不会通过添加CDS颗粒而显着影响。与纯TiO 2涂层相比,TiO2 / CDS涂层在模拟太阳照射下,TiO 2 / Cds涂层在甲基橙的降解中表现出增强的光催化活性(PA),以作为模型有机污染物。在加入0.4g / L的Cds颗粒中,在支撑电解质中形成的TiO 2 / Cds涂层观察到最高PA。光致发光测量表明,增强型PA与TiO 2和CD耦合产生的光生电子/孔对的重组率的降低有关。

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