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Superhydrophobic surface fabricated by bulk photografting of acrylic acid onto high-density polyethylene

机译:丙烯酸本体光接枝到高密度聚乙烯上的超疏水表面

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摘要

A superhydrophobic polymeric surface was prepared through a very simple bulk photografting method. A thin layer of acrylic acid (AA), a highly hydrophilic monomer, was sandwiched between two high-density polyethylene (HDPE) sheets, followed by UV irradiation for a short time, and then the two sheets were pulled apart and dried. The contact angles on the two grafted surfaces decreased very quickly with irradiation time in the first several seconds, and then increased with irradiation time to a level higher than that on pristine HDPE surface. When using a scraped PE surface as the bottom one, it showed superhydrophobicity after 35 s irradiation. XPS investigations show that strong rearrangement of the poly(acrylic acid) molecules has taken place on both surfaces, especially on the bottom Surface, which provides the low surface free energy. The scraping and the grafting process led to the formation a unique micro- and nanostructure on the surface. These two factors lead to the superhydrophobicity. The as prepared surface possesses superhydrophobic properties in a wide range of pH values, stimuli-responsive properties and low or very high adhesion under different situations. (c) 2008 Elsevier Inc. All rights reserved.
机译:通过非常简单的本体光接枝方法制备了超疏水性聚合物表面。在两个高密度聚乙烯(HDPE)片之间夹有一层薄薄的丙烯酸(AA)(一种高度亲水的单体),然后短时间进行UV照射,然后将两片拉开并干燥。在最初的几秒钟内,两个接枝表面的接触角随辐照时间而迅速减小,然后随辐照时间而增大,其水平高于原始HDPE表面上的水平。当使用刮擦的PE表面作为底部时,辐照35 s后显示超疏水性。 XPS研究表明,聚丙烯酸分子在两个表面上都发生了强烈的重排,特别是在底部表面,这提供了较低的表面自由能。刮擦和接枝过程导致在表面上形成独特的微米和纳米结构。这两个因素导致超疏水性。所制备的表面在不同的pH值范围内具有超疏水性能,刺激响应性能以及在不同情况下的低或非常高的附着力。 (c)2008 Elsevier Inc.保留所有权利。

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