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Effect of the TiO2-ZnO Heterostructure on the Photoinduced Hydrophilic Conversion of TiO2 and ZnO Surfaces

机译:TiO2-ZnO异质结构对TiO2和ZnO表面光诱导亲水转化的影响

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摘要

The present study demonstrates the effect of the composition and structure of TiO2-ZnO heterostructured coatings on the photoinduced hydrophilic conversion of TiO2 and ZnO surfaces. It has been observed that the kinetic parameters of the photoinduced hydrophilic conversion can be significantly changed. Based on the analysis of the experimental data and the proposed mechanism, it is concluded that the ratio between the surface concentrations of electrons and holes participating in the photoinduced generation and deactivation of hydrophilic surface sites plays the major role in this alteration of the surface hydrophilicity of such heterostructured coatings. The ratio between the surface concentrations of electrons and holes can be changed considerably by the formation of the so-called type II heterojunction between TiO2 and ZnO, yielding an effective charge separation. The proposed approach based on the creation of these type II heterostructures seems to be promising and productive both for fundamental studies of the photoinduced surface superhydrophilicity and for the application of self-cleaning coatings with controlled wettability.
机译:本研究证明了TiO2-ZnO异质结构涂层的组合物和结构对TiO 2和ZnO表面的光诱导亲水转化的影响。已经观察到光诱导的亲水转化率的动力学参数可以显着改变。基于实验数据的分析和所提出的机制,得出结论是,参与参与光诱导的发电和失活的亲水性表面部位的电子和孔之间的比率在这种改变表面亲水性的改变中起主要作用这种异质结构涂层。通过在TiO 2和ZnO之间形成所谓的II型异质结来显着改变电子和孔的表面浓度之间的比率,从而产生有效的电荷分离。基于创造这些II型异质结构的提出方法似乎是有前途和高效的,用于对光诱导的表面超级水性的基本研究以及应用自清洁涂层具有受控润湿性的自清洁涂层。

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