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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Enhancement of the Photoinduced Hydrophilic Conversion Rate of TiO_2 Film Electrode Surfaces by Anodic Polarization
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Enhancement of the Photoinduced Hydrophilic Conversion Rate of TiO_2 Film Electrode Surfaces by Anodic Polarization

机译:阳极极化提高TiO_2薄膜电极表面的光致亲水转化率

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摘要

Changes in hydrophilicity of TiO_2 film electrode surfaces by UV light irradiation in an aqueous solution were investigated under potential-controlled conditions. Although no change was observed when the electrode potential of TiO_2 was set around its flat-band potential E_(fb), the photoinduced hydrophilic conversion proceeded at potentials positive of E_(fb). The hydrophilic conversion rate increased with larger positive potentials, but the addition of hole scavengers decreased the rate, suggesting that the diffusion of photogenerated holes to the surface is the important process for the hydrophilic conversion. Based on these results, we propose a model in which the photoinduced hydrophilicity is initiated by two-hole trapping by a surface lattice oxygen, producing an oxygen defect, followed by the dissociative adsorption of a water molecule at the defect site.
机译:在电势控制的条件下研究了在水溶液中通过紫外线照射TiO_2薄膜电极表面亲水性的变化。尽管当将TiO_2的电极电位设置在其平带电位E_(fb)附近时没有观察到变化,但是光诱导的亲水转化在E_(fb)的正电位进行。亲水转化率随着正电势的增大而增加,但是空穴清除剂的加入降低了该速率,这表明光生空穴向表面的扩散是亲水转化的重要过程。基于这些结果,我们提出了一种模型,其中光诱导的亲水性是通过表面晶格氧的两个空穴俘获,产生氧缺陷,然后在缺陷部位解离吸附水分子而引发的。

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