首页> 外文期刊>Journal of Colloid and Interface Science >Effects of nanorod structure and conformation of fatty acid self-assembled layers on superhydrophobicity of zinc oxide surface
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Effects of nanorod structure and conformation of fatty acid self-assembled layers on superhydrophobicity of zinc oxide surface

机译:纳米棒结构和脂肪酸自组装层构象对氧化锌表面超疏水性的​​影响

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摘要

Superhydrophobic surfaces have been prepared from nanostructured zinc oxide layers by a treatment with fatty acid molecules.The layers are electrochemically deposited from an oxygenated aqueous zinc chloride solution.The effects of the layer's structure,from a dense film to that of a nanorod array,as well as that of the properties of the fatty acid molecules based on C18 chains are described.A contact angle(CA)as high as 167° is obtained with the nanorod structure and the linear saturated molecule(stearic acid).Lower values are found with molecules having an unsaturated bond on C9,in particular with a cis conformation(140°).These results,supplemented by infrared spectroscopy,indicate an enhancement of the sensitivity to the properties of the fatty acid molecules(conformation,flexibility,saturated or not)when moving from the flat surface to the nanostructured surface.This is attributed to a specific influence of the structure of the tops of the rods and lateral wall properties on the adsorption and organization of the molecules.CA measurements show a very good stability of the surface in time if stored in an environment protected from UV radiations.
机译:超疏水性表面是由纳米结构的氧化锌层通过脂肪酸分子处理而制备的。这些层是从含氧氯化锌水溶液中电化学沉积的。该层的结构从致密膜到纳米棒阵列的影响并描述了基于C18链的脂肪酸分子的性质。纳米棒结构和线性饱和分子(硬脂酸)的接触角(CA)高达167°。在C9上具有不饱和键的分子,特别是具有顺式构象(140°)的分子。这些结果,通过红外光谱的补充,表明对脂肪酸分子的性质(构象,柔韧性,饱和或不饱和)的敏感性增强。当从平面移动到纳米结构表面时,这归因于杆顶部结构和侧壁性能对广告的特定影响如果存储在不受紫外线辐射的环境中,CA测量会及时显示表面非常好的稳定性。

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