首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Quantitative Evaluation of the Photoinduced Hydrophilic Conversion Properties of TiO_2 Thin Film Surfaces by the Reciprocal of Contact Angle
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Quantitative Evaluation of the Photoinduced Hydrophilic Conversion Properties of TiO_2 Thin Film Surfaces by the Reciprocal of Contact Angle

机译:接触角倒数定量评价TiO_2薄膜表面光致亲水转化性能

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摘要

Kinetics on the photoinduced hydrophilic conversion processes of the TiO_2 surface was investigated. First, we show that there exist linear relationships between the reciprocal of the contact angle and the UV irradiation time and use the slope of this straight line as the hydrophilic conversion rate, which is independent of the initial value of the contact angle. Second, we examine the relationships between the reciprocal of the contact angle and the reconstruction of the surface hydroxyl groups and show that the reciprocal of the contact angle corresponds to the density of the surface hydroxyl groups reconstructed by UV irradiation. Finally, the dependence of the hydrophilic conversion on various parameters such as the incident UV intensity, the wavelength of irradiated light, and the concentration of the hole scavenger are quantitatively investigated with the proposed hydrophilic conversion rate. These results show that the photoinduced hydrophilic conversion proceeds competitively with the photocatalytic oxidation process on the TiO_2 surface under UV irradiation. The comparison of the hydrophilic conversion rate with the rate for the reverse process clarifies that the critical contact angle is obtained when the reconstruction of the surface hydroxyl groups and their relaxation process are equilibrated under UV irradiation.
机译:研究了TiO_2表面光诱导亲水转化过程的动力学。首先,我们表明接触角的倒数与紫外线照射时间之间存在线性关系,并使用该直线的斜率作为亲水性转化率,这与接触角的初始值无关。其次,我们检查了接触角的倒数与表面羟基的重构之间的关系,并表明接触角的倒数对应于通过紫外线照射重构的表面羟基的密度。最后,利用提出的亲水转化率,定量研究了亲水转化对各种参数的依赖性,例如入射紫外线强度,照射光的波长和空穴清除剂的浓度。这些结果表明,在紫外线辐射下,光诱导的亲水转化与TiO_2表面上的光催化氧化过程竞争性地进行。亲水转化率与逆过程的速率的比较表明,当在紫外线照射下平衡表面羟基的重建及其松弛过程时,可获得临界接触角。

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