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Study on Hydrophobic Properties of Two-dimensional Grating on Fluorine-containing Azobenzene Polymer Film

机译:含氟偶氮苯聚合物薄膜二维光栅的疏水性研究

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The method of building micro-structures on the surface of certain materials could build a regular structure on the surface of the material to ensure the consistency of the material surface hydrophobic properties. In this paper, the all-optical method has been applied to produce two-dimensional surface relief grating on the surface of fluorine-containing azobenzene polymer film by using this method as an approach combined with the material's properties of photo-responsive and low surface energy. The hydrophobic property of the final "two dimensional surface relief grating" has also been tested. Period combinations of 500nm×500nm, 500nm×600nm, 600nm×700nm, 700nm×800nm and the other eleven has been used to fabricate two-dimensional surface relief grating and their final results have been compared. The results show that, for the same period of grating, the contact angle becomes larger with the increase of the modulation depth. However, the contact angle becomes smaller as the grating period increases. Above all, the period and modulation depth of two-dimensional grating have a great impact on the hydrophobicity.
机译:在某些材料的表面上构建微结构的方法可以在材料的表面上构建规则的结构,以确保材料表面疏水性的一致性。本文结合材料的光响应性和低表面能特性,采用全光法在含氟偶氮苯聚合物膜表面上制作二维表面起伏光栅。 。最终的“二维表面浮雕光栅”的疏水性也已经过测试。用500nm×500nm,500nm×600nm,600nm×700nm,700nm×800nm和其他十一种的周期组合制造二维表面起伏光栅,并比较了它们的最终结果。结果表明,在相同的光栅周期内,接触角随调制深度的增加而增大。但是,随着光栅周期的增加,接触角变小。最重要的是,二维光栅的周期和调制深度对疏水性有很大的影响。

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