首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Facile dip-coating approach to fabrication of mechanically robust hybrid thin films with high transmittance and durable superhydrophilicity
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Facile dip-coating approach to fabrication of mechanically robust hybrid thin films with high transmittance and durable superhydrophilicity

机译:易于浸涂的方法来制造具有高透射率和持久超亲水性的机械坚固的混合薄膜

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In this work, we report a facile dip-coating approach to fabricate mechanically robust hybrid thin films with high transmittance and durable superhydrophilicity. Glass substrates were first coated with a mesostructured SiO2 thin film (MSiO2) by acid catalysis. The thin film is continuously mesoporous with antireflective and self-cleaning properties. Then, the substrate with MSiO2 thin film was covered with a mesoporous TiO2 thin film (MTiO2) by dip-coating. The maximum transmittance of the hybrid thin film coated substrate is as high as 96.9% at 620 nm. The film surface showed an outstanding superhydrophilic property (water contact angle less than 1° in 0.5 s). The superhydrophilicity of the as-prepared double layer thin film could last for 60 days, which is much better than those of the as-prepared SiO2 thin film (30 days) and the as-prepared TiO2 thin film (15 days). The MSiO2--MTiO2 thin film lost its superhydrophilicity after being stored in the dark for 105 days, but its superhydrophilicity could be restored by UV illumination. It could maintain its self-cleaning property after repeated storage and UV irradiation cycles, suggesting self-healing superhydrophilicity by UV irradiation. Taber abrasion test, sand impact test and washing test showed that the hybrid thin film had excellent mechanical robustness and could remain nearly intact during these tests. SEM, AFM, BET and XRD were employed to characterize the morphology, porosity and crystal form of the hybrid thin film. Methylene blue photodegradation was examined to evaluate the photocatalytic activity of the hybrid thin film. The MSiO2-MTiO2 coated glasses have potential in various areas, like solar cells, windowpanes and eyeglasses, and may also find applications in membrane-based separation, selective catalysis and sensors.
机译:在这项工作中,我们报告了一种简便的浸涂方法来制造具有高透射率和持久超亲水性的机械坚固的混合薄膜。首先通过酸催化在玻璃基板上涂上介孔结构的SiO2薄膜(MSiO2)。薄膜是连续的介孔,具有抗反射和自清洁特性。然后,通过浸涂用中孔TiO 2薄膜(MTiO 2)覆盖具有MSiO 2薄膜的基板。杂化薄膜涂覆的基材在620nm下的最大透射率高达96.9%。膜表面显示出优异的超亲水性(水接触角在0.5 s内小于1°)。所制备的双层薄膜的超亲水性可以持续60天,这比所制备的SiO 2薄膜(30天)和所制备的TiO 2薄膜(15天)要好得多。 MSiO2--MTiO2薄膜在黑暗中保存105天后失去了超亲水性,但其超亲水性可以通过紫外线照射恢复。经过反复储存和紫外线照射后,它可以保持其自清洁性能,这表明紫外线照射具有自我修复的超亲水性。泰伯磨耗试验,沙冲击试验和洗涤试验表明,杂化薄膜具有优异的机械强度,在这些试验中可以保持几乎完好无损。用SEM,AFM,BET和XRD表征了杂化薄膜的形貌,孔隙率和晶形。研究了亚甲基蓝的光降解,以评估杂化薄膜的光催化活性。涂有MSiO2-MTiO2的玻璃在太阳能电池,窗玻璃和眼镜等各个领域都具有潜力,并且还可在基于膜的分离,选择性催化和传感器中找到应用。

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