da Silva Cardoso Raquel, Maria de Amorim Suélen, Scaratti Gidiane, Moura-Nickel Camilla Daniela, Muniz Moreira Rodrigo Peralta, Li Puma Gianluca, Moreira Regina de Fatima Peralta Muniz
Department of Chemical and Food Engineering, Federal University of Santa Catarina Florianópolis Brazil
Environmental Nanocatalysis & Photoreaction Engineering, Department of Chemical Engineering, Loughborough University UK.
RSC Adv. 2020 May 4;10(29):17247-17254. doi: 10.1039/d0ra02242j. eCollection 2020 Apr 29.
The self-cleaning and super hydrophilic properties of pristine TiO and of TiO doped with Er or Y transparent thin films deposited onto glass substrates were investigated. The thin films prepared by multiple dipping and drying cycles of the glass substrate into the pristine TiO sol and Er or Y-doped TiO sol were characterized by X-ray diffraction, UV-vis spectrophotometry, and atomic force microscopy (AFM). The self-cleaning photocatalytic activity of the thin films towards the removal of oleic acid deposited on the surface under UVA irradiation was evaluated. A remarkable enhancement was observed in the hydrophilic nature of the TiO thin films under irradiation. The optical properties and wettability of TiO were not affected by Er or Y doping. However, the photocatalytic degradation of oleic acid under UVA irradiation improved up to 1.83 or 1.95 fold as the Er or Y content increased, respectively, due to the enhanced separation of the photogenerated carriers and reduced crystallite size. AFM analysis showed that the surface roughness increased by increasing the Er or Y content due to the formation of large aggregates. This in turn contributes to the increase of the active surface area enhancing the photodegradation process. This study demonstrates that TiO doped with low amounts of Er or Y down to 0.5 mol% can produce transparent, super-hydrophilic, thin film surfaces with remarkable self-cleaning properties.
研究了沉积在玻璃基板上的原始TiO以及掺杂了Er或Y的TiO透明薄膜的自清洁和超亲水性。通过将玻璃基板在原始TiO溶胶以及掺Er或Y的TiO溶胶中进行多次浸渍和干燥循环制备的薄膜,采用X射线衍射、紫外可见分光光度法和原子力显微镜(AFM)进行了表征。评估了薄膜在UVA辐照下对去除沉积在表面的油酸的自清洁光催化活性。在辐照下观察到TiO薄膜的亲水性有显著增强。TiO的光学性质和润湿性不受Er或Y掺杂的影响。然而,由于光生载流子的分离增强和微晶尺寸减小,在UVA辐照下油酸的光催化降解分别随着Er或Y含量的增加提高了1.83倍或1.95倍。AFM分析表明,由于形成大的聚集体,表面粗糙度随着Er或Y含量的增加而增大。这反过来又有助于增加活性表面积,从而增强光降解过程。本研究表明,掺杂低至0.5 mol%的Er或Y的TiO可以制备出具有显著自清洁性能的透明、超亲水薄膜表面。