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首页> 外文期刊>Colloid and polymer science >High- and low-adhesive superhydrophobicity on the liquid flame spray-coated board and paper: structural effects on surface wetting and transition between the low- and high-adhesive states
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High- and low-adhesive superhydrophobicity on the liquid flame spray-coated board and paper: structural effects on surface wetting and transition between the low- and high-adhesive states

机译:液体火焰喷涂纸和纸板上的高和低粘合超疏水性:对表面润湿和低和高粘合状态之间转变的结构影响

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摘要

Surface wetting is an important and relevant phenomenon in several different fields. Scientists have introduced a large number of applications where special surface wetting could be exploited. Here, we study wetting phenomena on high- and low-adhesive superhydrophobic liquid flame spray (LFS)-generated TiO2 coatings on paper and pigment-coated board substrates using water-ethanol solution as a probe liquid. Submicrometer-scale air gaps, which exist on superhydrophobic surfaces below the liquid droplets, were more stable with the ethanol increment than the larger-scale micrometric air gaps. With the droplet ethanol concentration of 15 wt%, static contact angle as high as 155 ±2° was measured on the LFS-TiO2-coated board. Transition from the low-adhesive wetting state to the high-adhesive state was demonstrated on the LFS-TiO2-coated paper. The LPS method enables efficient roll-to-roll production of surfaces with special wetting properties on economically viable board and paper substrate materials.
机译:表面润湿是在几个不同领域中的重要且相关的现象。科学家介绍了许多可以利用特殊表面润湿技术的应用。在这里,我们研究使用水-乙醇溶液作为探测液,在高粘性和低粘性超疏水液体火焰喷涂(LFS)生成的TiO2涂料在纸和颜料涂层的基板基材上的润湿现象。存在于液滴下方的超疏水表面上的亚微米级气隙,随着乙醇的增加,比大型微米级气隙更稳定。在液滴乙醇浓度为15 wt%的情况下,在LFS-TiO2涂层板上测得的静态接触角高达155±2°。在LFS-TiO2涂布纸上证明了从低黏度润湿状态到高黏度状态的转变。 LPS方法可以在经济上可行的纸板和纸质基材上高效卷对卷生产具有特殊润湿性能的表面。

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