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Superhydrophobic surfaces fabricated by spray-coating micelle solutions of comb copolymers

机译:通过喷涂梳状共聚物胶束溶液制备的超疏水表面

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摘要

A series of comb copolymers (poly(arylene alkylene ether) (FPAE)-polystyrene (PS)) with a highly fluorinated FPAE main chain and narrow dispersed PS-grafted chains have been prepared. They are used to prepare micelle solutions in methanol/acetone (M/A) mixed solvents which are good for the FPAE main chains and poor for the PS-grafted chains. In these solutions, the PS-grafted chains form the cores and the FPAE main chains form the corona layers of micelle particles. Uniform micelle particles are achieved because of the narrow molecular weight dispersion of the PS chain length. The micelle solutions are spray-coated onto glass substrates to fabricate hydrophobic surfaces. It is found that the stability of the micelle particles increases with the length of the PS-grafted chains, which further influences the morphology and hydrophobicity of the spray-coated films. The effects of the M/A ratio and the copolymer concentration on the morphology and hydrophobicity of the coating surfaces are also studied. The results prove that a binary nano/microsurface structure is important to achieve a superhydrophobic surface with a low contact angle hysteresis. This binary structure is formed from conglomeration of micelle particles by spray coating the micelle solutions. The best sample reported in this paper has a static contact angle of 163° and a sliding angle of 5.9°. This fabrication procedure is facile, less time consuming, and easily applicable for large-scale surface treatment.
机译:制备了一系列具有高度氟化的FPAE主链和窄分散的PS接枝链的梳状共聚物(聚(亚芳基亚烷基醚)(FPAE)-聚苯乙烯(PS))。它们用于在甲醇/丙酮(M / A)混合溶剂中制备胶束溶液,这对FPAE主链有利,而对PS接枝链不利。在这些解决方案中,PS接枝链形成核心,而FPAE主链形成胶束颗粒的电晕层。由于PS链长的分子量分布较窄,因此可实现均匀的胶束颗粒。将胶束溶液喷涂在玻璃基板上以制造疏水表面。发现胶束颗粒的稳定性随PS接枝链的长度增加而增加,这进一步影响了喷涂膜的形态和疏水性。还研究了M / A比和共聚物浓度对涂层表面的形态和疏水性的影响。结果证明,二元纳米/微表面结构对于获得具有低接触角滞后的超疏水表面很重要。该二元结构是通过将胶束溶液喷雾涂覆而由胶束颗粒的团聚形成的。本文报道的最佳样品的静态接触角为163°,滑动角为5.9°。该制造过程容易,耗时少并且容易适用于大规模表面处理。

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  • 来源
    《Colloid and Polymer Science 》 |2013年第6期| 1409-1418| 共10页
  • 作者单位

    College of Chemical Engineering Sichuan University">(3);

    Institute for Chemical Process and Environmental Technology National Research Council Canada">(2);

    Institute for Chemical Process and Environmental Technology National Research Council Canada">(2);

    Polymer Science and Engineering Department School of Chemistry and Chemical Engineering State Key Laboratory of Coordination Chemistry Nanjing University">(1);

    Polymer Science and Engineering Department School of Chemistry and Chemical Engineering State Key Laboratory of Coordination Chemistry Nanjing University">(1);

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