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Novel liquid-solid adhesion superhydrophobic surface fabricated using titanium dioxide and trimethoxypropyl silane

机译:用二氧化钛和三甲氧基丙基硅烷制备的新型液固粘合超疏水表面

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摘要

The present paper reports the preparation of very simple and inexpensive superhydrophobic surfaces fabricated using titanium dioxide and lower alkyl chain silane (trimethoxypropyl silane) in aqueous or non-aqueous solvent. The superhydrophobic surfaces fabricated in aqueous or non-aqueous solvent had same static water contact angle, but showed different contact angle hysteresis and liquid-solid adhesion. Superhydrophobic surface fabricated in aqueous solvent showed high contact angle hysteresis (CAH). In addition, liquid-solid adhesion of superhydrophobic surface fabricated in aqueous solvent is different in which the water droplet roll on the surface but will not roll off out of the surface during tilting and fell down when turned upside down. The reason for such high contact angle hysteresis and novel liquid-solid adhesion behavior is explained on the basis of measurements on the superhydrophobic surface using water contact angle (WCA) data, profilometry, SEM images, XPS and FTIR-ATR analysis. These results are compared with the superhydrophobic surface fabricated in non-aqueous solvent which showed self-cleaning properties. Based on WCA, XPS and FTIR-ATR analysis, it is shown that the difference in the CAH is more chemical in origin than morphology.
机译:本文报道了使用二氧化钛和低级烷基链硅烷(三甲氧基丙基硅烷)在水性或非水性溶剂中制备的非常简单且廉价的超疏水表面的制备方法。在水性或非水性溶剂中制备的超疏水表面具有相同的静态水接触角,但显示出不同的接触角滞后性和液固粘附性。在水性溶剂中制备的超疏水表面显示出高接触角滞后(CAH)。另外,在水性溶剂中制造的超疏水表面的液固粘附性是不同的,其中水滴在表面上滚动但在倾斜期间不会滚出表面,并且当倒置时会掉落。基于使用水接触角(WCA)数据,轮廓测定法,SEM图像,XPS和FTIR-ATR分析对超疏水表面进行的测量,解释了如此高的接触角滞后和新颖的液固粘附行为的原因。将这些结果与在非水溶剂中制成的超疏水表面进行了比较,该表面具有自清洁性能。基于WCA,XPS和FTIR-ATR分析,结果表明,CAH的差异是化学来源而非形态。

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