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Transparent superhydrophobic/superhydrophilic TiO2-based coatings for self-cleaning and anti-fogging

机译:透明的超疏水/超亲水性TiO2基涂料,用于自清洁和防雾

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摘要

A stable titanate nanobelt (TNB) particle suspension was prepared by a hydrogen-bond-driven assembly of pre-hydrolysed fluoroalkylsilane (FAS) on its surface. A one-step electrophoretic deposition was applied to fabricate a transparent cross-aligned superhydrophobic TNB/FAS film on a conducting glass substrate. By controlling the deposition time, we have shown the transition between a "sticky" hydrophobic state (high contact angle with strong adhesion) and a "sliding" superhydrophobic state (high contact angle with weak adhesion). The optical transmittance can reach as high as 80% throughout most of the visible light region of the spectrum. These coatings have also displayed high chemical stability and self-cleaning ability. Upon heating the hydrophobic coatings at 500 ℃, the TNB coating transforms into a porous TiO2(B) structure with superhydrophilic behavior and could be used for anti-fogging applications. With this TiO2-based system, we have demonstrated three different wetting states: superhydrophobicity with weak adhesion, high hydrophobicity with strong adhesion, and superhydrophilicity with immediate water spreading. Moreover, this work has also demonstrated superhydrophobic TNB/FAS films with high chemical stability and good self-cleaning performance and superhydrophilic pore-like TiO2(B) films with rapid water spreading and excellent anti-fogging ability.
机译:通过氢键驱动的预水解氟烷基硅烷(FAS)在其表面上的组装,可以制备稳定的钛酸酯纳米带(TNB)颗粒悬浮液。进行一步电泳沉积,以在导电玻璃基板上制备透明的交叉取向超疏水TNB / FAS膜。通过控制沉积时间,我们显示了“粘性”疏水状态(高接触角,附着力强)和“滑动”超疏水状态(高接触角,附着力弱)之间的过渡。在光谱的大部分可见光区域中,光学透射率可高达80%。这些涂层还显示出高化学稳定性和自清洁能力。在500℃加热疏水涂层后,TNB涂层转变为具有超亲水性能的多孔TiO2(B)结构,可用于防雾应用。通过这种基于TiO2的体系,我们已经证明了三种不同的润湿状态:弱附着力的超疏水性,强附着力的高疏水性和立即扩水的超亲水性。此外,这项工作还证明了具有高化学稳定性和良好的自清洁性能的超疏水性TNB / FAS膜,以及具有快速的水铺展性和优异的防雾能力的超亲水性孔状TiO2(B)膜。

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