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多晶 TiO2 表面的润湿性:粗糙度因子的标度方法。

Wetting properties of polycrystalline TiO2 surfaces: a scaling approach to the roughness factors.

机构信息

Instituto de Ciencia de Materiales de Sevilla (CSIC-Univ. Sevilla), Avd. Américo Vespucio 49, 41092 Sevilla, Spain.

出版信息

Langmuir. 2010 Oct 19;26(20):15875-82. doi: 10.1021/la101975e.

Abstract

This work presents a thorough study on the wettability of polycrystalline anatase TiO(2) thin films prepared at 250 °C in a microwave plasma enhanced chemical vapor deposition (MW-PECVD) reactor with Ar/O(2) plasmas. Anatase polycrystalline thin films with different microstructures, textures, and surface roughness were obtained as a function of their thickness. The water contact angle of the samples was analyzed within the assumptions of the Wenzel, Cassie, and Miwa models to ascertain the effect of roughness and other surface heterogeneities on their characteristic parameters. The roughness factors defined in the different models were calculated from the atomic force microscopy (AFM) images of the films for two different observation scales within the premises of the dynamic scaling theories. The obtained results indicate that the wetting angle of an equivalent flat anatase surface with a value of 82° can only be properly estimated for observation scales of 5 × 5 μm(2) and using the Miwa model. The analysis of the UV induced hydrophilization of the surface state of the anatase films and the posterior recovery of the partially hydrophobic character of these surfaces in the absence of UV photons suggest a clear dependence of the light induced wettability on their texture and size of crystalline domains.

摘要

本工作对在 250°C 下使用微波等离子体增强化学气相沉积(MW-PECVD)反应器中的 Ar/O2 等离子体制备的结晶型锐钛矿 TiO2 薄膜的润湿性进行了深入研究。作为厚度的函数,获得了具有不同微观结构、织构和表面粗糙度的锐钛矿多晶薄膜。根据 Wenzel、Cassie 和 Miwa 模型的假设,分析了样品的水接触角,以确定粗糙度和其他表面不均匀性对其特征参数的影响。从薄膜的原子力显微镜(AFM)图像中,根据动态标度理论的前提,为两个不同的观察尺度计算了不同模型中的粗糙度因子。所得结果表明,仅当观察尺度为 5×5μm2 且使用 Miwa 模型时,才能正确估计具有 82°值的等效平坦锐钛矿表面的润湿角。对锐钛矿薄膜表面的紫外诱导亲水性以及在没有紫外光子的情况下这些表面部分疏水特性的恢复的分析表明,光诱导润湿性明显依赖于其纹理和晶体域的大小。

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