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Super water repellent fabrics produced by silica nanoparticle-containing coating

机译:通过含二氧化硅纳米颗粒的涂层生产的超疏水织物

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摘要

In this paper, we report on superhydrophobic fabrics (polyester, wool and cotton) produced by a wet-chemical coating technique. The coating solutions were synthesized by the co-hydrolysis of two silane precursors, tetraethyl orthosilicate (TEOS) and an alkylsilane, in an alkaline condition. Without any purification, the as-hydrolyzed solutions were directly used to treat fabrics, and the treated fabrics had water contact angles (CA) as high as 170º and sliding angles (SA) as low as 5º. Three alkylsilanes have been used for the synthesis of the coating solutions, and all contain three hydrolysable alkoxyl groups and one non-hydrolysable alkyl, but with different chain lengths (C1, C8 and C16). It was found that the CA value increased with an increase in the alkyl chain length, while the SA showed a reverse trend. When the functional group had a C16 alkyl, the treated fabric surfaces were highly superhydrophobic, with the CA not being affected much by the fabric type, while the SA values were slightly affected by the original wettability of the fabric substrates. The superhydrophobic feature was attributed to a highly rough surface formed by the particulate coating. Aside from the superhydrophobicity, the influence of the coating on the fabric softness was also examined.
机译:在本文中,我们报告了通过湿化学涂层技术生产的超疏水性织物(聚酯,羊毛和棉)。通过在碱性条件下将两种硅烷前体(原硅酸四乙酯(TEOS)和烷基硅烷)共水解来合成涂料溶液。未经水解的水解溶液直接用于处理织物,处理后的织物的水接触角(CA)高达170º,滑动角(SA)高达5º。三种烷基硅烷已用于合成涂料溶液,并且全部包含三个可水解的烷氧基和一个不可水解的烷基,但链长不同(C1,C8和C16)。发现CA值随着烷基链长度的增加而增加,而SA显示出相反的趋势。当官能团具有C 16烷基时,处理过的织物表面是高度超疏水的,CA不受织物类型的影响很大,而SA值则受织物底物的原始润湿性的影响很小。超疏水特征归因于颗粒涂层形成的高度粗糙的表面。除了超疏水性以外,还检查了涂层对织物柔软度的影响。

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