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Photo-Induced Super-hydrophilic Thin Films on Quartz Glass by UV Irradiation of Precursor Films Involving a Ti(IV) Complex at Room Temperature

机译:室温下含Ti(IV)配合物的前体膜的紫外线辐射在石英玻璃上光诱导超亲水薄膜

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摘要

Photo-induced super-hydrophilic thin films were fabricated on a quartz glass substrate by ultraviolet (UV) irradiation of a molecular precursor film at room temperature. A molecular precursor film exhibiting high solubility to both ethanol and water was obtained by spin-coating a solution involving a Ti(IV) complex; this complex was prepared by the reaction of Ti(IV) alkoxide with butylammonium hydrogen oxalate and hydrogen peroxide in ethanol. Transparent and well-adhered amorphous thin films of 160–170 nm thickness were obtained by weak UV irradiation (4 mW·cm−2 at 254 nm) of the precursor films for over 4 h at room temperature. The resultant thin films exhibiting low refractive indices of 1.78–1.79 were mechanically robust and water-insoluble. The chemical components of the thin films were examined by means of Fourier transform-infrared (FT-IR) and X-ray photoelectron spectroscopy (XPS) spectra, focusing on the presence of the original ligands. The super-hydrophilic properties (evaluated based on the water contact angles on the surfaces) of the thin films after being kept in a dark condition overnight emerged when the aforementioned UV-light irradiation was performed for 10 min. It was additionally clarified that the super-hydrophilicity can be photo-induced repeatedly by UV irradiation for 10 min (indicated by a contact angle smaller than 4°) even after the hydrophilic level of the thin films had once been lowered by being in a dark condition for 4 h.
机译:通过在室温下对分子前体膜进行紫外线(UV)照射,在石英玻璃基板上制备光诱导的超亲水薄膜。通过旋涂包含Ti(IV)配合物的溶液,获得对乙醇和水均显示高溶解度的分子前体膜。该配合物是通过使Ti(IV)醇盐与草酸氢丁基铵和过氧化氢在乙醇中反应制得的。通过在室温下对前体膜进行弱紫外线照射(在254 nm下为4 mW·cm -2 )4个小时以上,可获得厚度为160-170 nm的透明且粘附良好的非晶薄膜。所得的薄膜具有1.78–1.79的低折射率,具有机械坚固性和水不溶性。借助于傅立叶变换红外(FT-IR)和X射线光电子能谱(XPS)光谱检查了薄膜的化学成分,重点是原始配体的存在。当保持上述黑暗状态过夜后,当进行上述紫外线照射10分钟时,薄膜的超亲水性(基于表面上的水接触角进行评估)显现出来。另外要说明的是,即使在黑暗中使薄膜的亲水性水平降低一次之后,也可以通过紫外线照射10分钟(以小于4°的接触角表示)反复光诱导超亲水性。条件持续4小时。

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