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Enhanced photocatalytic activity of TiO2 thin films on plasma-pretreated organic polymers

机译:等离子体预处理的有机聚合物上TiO2薄膜的光催化活性增强

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摘要

Organic polymers are excellent substrates for photocatalytic applications of TiO2 thin films, which can be easily prepared by sol-gel synthesis followed by dip coating. However, the wettability of the hydrophobic surface of polymers should be improved. In this work, commercial poly(vinyl chloride) (PVC), poly(methyl methacrylate) (PMMA) and polystyrene (PS) were selected according to their high transmittance in the TiO2 activation range for the immobilization of the semiconductor. Low pressure (LPP) and atmospheric pressure (APP) plasma were used to modify the surface properties of the organic polymers to improve the affinity for TiO2 aqueous sols and solutions. The characterization of the materials was performed by atomic force microscopy (AFM), UV-Vis spectroscopy, and contact angle and surface tension measurements, employed to evaluate wettability of the samples. The effect of the power of discharge and treatment time on the induced surface properties was analyzed. LPP at 300 W during 600 s was found as adequate treatment to promote the hydrophilicity of all samples without damage to the bulk. The adhesion of TiO2 thin films on the polymers was improved with the plasma pre-treatment due to the generation of roughness and specific polar functional groups. Accordingly, the photocatalytic performance increased with respect to the non-treated substrates, reaching similar conversion values than the reference photocatalyst where glass, a hydrophilyc substrate, was used as support.
机译:有机聚合物是用于TiO2薄膜光催化应用的优异基材,可以通过溶胶-凝胶合成然后浸涂轻松制备。但是,应改善聚合物疏水表面的润湿性。在这项工作中,根据其在TiO2活化范围内的高透射率选​​择了商用聚氯乙烯(PVC),聚甲基丙烯酸甲酯(PMMA)和聚苯乙烯(PS)来固定半导体。低压(LPP)和大气压(APP)等离子体用于修饰有机聚合物的表面特性,以提高对TiO2水性溶胶和溶液的亲和力。通过原子力显微镜(AFM),UV-Vis光谱以及接触角和表面张力测量对材料进行表征,以评估样品的可湿性。分析了放电功率和处理时间对诱导的表面性能的影响。发现在600 s内300 W的LPP可作为适当的处理方法,以促进所有样品的亲水性而不会损坏体积。由于产生了粗糙度和特定的极性官能团,通过等离子体预处理提高了TiO2薄膜在聚合物上的附着力。因此,相对于未处理的基材,光催化性能提高,达到了与将玻璃(亲水性基材)用作载体的参考光催化剂相似的转化值。

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