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Development of novel superhydrophobic coatings using siloxane-modified epoxy nanocomposites

机译:使用硅氧烷改性环氧纳米复合材料的新型超疏水涂层的研制

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The extensive research and interest in superhydrophobic surfaces have not yet resulted in their widespread utilization. Limitations include high cost, complex fabrication techniques, and poor durability. Herein, we report a facile, economic, and scalable spray-coating fabrication technique that utilizes an epoxy-silica nanocomposite to create robust and durable superhydrophobic coatings. To overcome its inherent high surface energy, the epoxy was modified using an amino-functionalized polysiloxane. The newly developed nanocomposite coating demonstrated excellent water repellency with contact angles of similar to 165 degrees and sliding angles of similar to 3 degrees for different substrate materials such as metals, wood, glass, and textile. Our results revealed that a nanocomposite coating with a silica concentration of similar to 28 wt% provides an optimum balance between superhydrophobicity and durability. We also investigated the effect of solvent volatility on the hierarchical structure and superhydrophobicity of the coated samples, which is rarely considered in the literature. It was found that a spray emulsion with lower solvent volatility results in an enhanced surface microstructure that improves water repellency. Moreover, the coated samples demonstrated excellent robustness and durability against peeling, abrasion, corrosion (pH 1 to 13), and high temperature (up to 150 degrees C) environments exposure tests. The outcome of our efforts confirms that the epoxy modification process leads to enhanced superhydrophobicity without compromising the robustness and durability of the coating. This remarkable performance offers a great potential for large-scale production of superhydrophobic surfaces operating in harsh working conditions.
机译:广泛的研究和兴趣的超疏水表面尚未导致其广泛的利用。限制包括高成本,复杂的制造技术,耐久性差。在此,我们报告了一种容易,经济和可伸缩的喷涂制造技术,其利用环氧树脂 - 二氧化硅纳米复合材料来产生鲁棒和耐用的超疏水涂层。为了克服其固有的高表面能,使用氨基官能化的聚硅氧烷改性环氧树脂。新开发的纳米复合材料涂层具有优异的防水性,其与相似的接触角度与165度和相似的滑动角度,与不同的基底材料相似,如金属,木材,玻璃和纺织品。我们的结果表明,具有与28wt%类似的二氧化硅浓度的纳米复合涂层在超细纤维性和耐久性之间提供了最佳平衡。我们还研究了溶剂挥发性对涂覆样品的层次结构和超途径的影响,该样品很少在文献中考虑。发现具有较低溶剂挥发性的喷雾乳液导致增强的表面微观结构,从而改善了防水性。此外,涂覆的样品对剥离,磨损,腐蚀(pH1至13)和高温(最多150摄氏度)的环境进行了优异的鲁棒性和耐久性。我们努力的结果证实,环氧改性过程导致增强的超疏水性,而不会影响涂层的稳健性和耐久性。这种显着性能具有在恶劣工作条件下运行的超疏水表面的大规模生产的巨大潜力。

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