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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Relationship between surface hydrophobicity and water bounces - a dynamic method for accessing surface hydrophobicity
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Relationship between surface hydrophobicity and water bounces - a dynamic method for accessing surface hydrophobicity

机译:表面疏水性与水反弹之间的关系-一种获取表面疏水性的动态方法

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摘要

Video camera analysis was used to measure the number of bounces of water droplets and modified water droplets on a range of superhydrophobic surfaces with different surface microstructures from rounded to ridge-like to needle-like. It was found that the number of bounces could be related to the static water contact angle on the surface. The initiation point for water bouncing occurred at a static water contact measurement of 151° for rounded surfaces, 156° for sharp surfaces and 171° for extremely sharp (needle-like) surfaces. The number of bounces observed on the same superhydrophobic surface was directly probed by the addition of a surfactant (sodium dodecyl sulfate), salts (NaCI, CaCI2, LaCI3) and addition of methanol. This showed the number of bounces was related to droplet size, droplet density, droplet surface tension, surface microstructure and surface free energy of interaction with water.
机译:使用摄像机分析仪来测量一系列具有不同表面微观结构的超疏水表面上的水滴和改性水滴的反弹次数,这些表面具有从圆形到脊状到针状的不同微观结构。发现反弹的次数可能与表面上的静态水接触角有关。反弹的起始点发生在圆形表面的静态水接触测量值为151°,尖锐表面为156°和极尖锐(针状)表面为171°的情况下。通过添加表面活性剂(十二烷基硫酸钠),盐(NaCl,CaCl2,LaCl3)和添加甲醇,可以直接探测在同一超疏水表面上观察到的弹跳数。这表明反弹的次数与液滴的大小,液滴的密度,液滴的表面张力,表面的微观结构以及与水相互作用的表面自由能有关。

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