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首页> 外文期刊>Applied Surface Science >Fabrication of robust and thermally stable superhydrophobic nanocomposite coatings based on thermoplastic polyurethane and silica nanoparticles
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Fabrication of robust and thermally stable superhydrophobic nanocomposite coatings based on thermoplastic polyurethane and silica nanoparticles

机译:基于热塑性聚氨酯和二氧化硅纳米粒子的坚固且热稳定的超疏水纳米复合涂料的制备

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摘要

In this paper, superhydrophobic nanocomposite coatings based on thermoplastic polyurethane (TPU) and modified nanosilica were fabricated using a simple solution-based method. The main challenge was to impart superhydrophobicity to an intrinsically hydrophilic polymer substrate. The prepared nanocomposite coatings were characterized by means of scanning electron microscopy, confocal microscopy and X-ray photoelectron spectroscopy. Based on the obtained results, it was proved that in order to achieve superhydrophobicity, no TPU macromolecule should be present on the coating's top layer, thus a complete coverage of coating's top layer by nanosilica particles was necessary for achieving ultra water repellent coatings. Mechanical and thermal resistance of the coatings, which are the main challenges incommercializing superhydrophobic surfaces, were also studied by drop impact and thermal annealing tests, respectively. It was proved that using TPU as a sublayer results in improving mechanical resistance of the coatings as compared with the pure silica nanocoating. Moreover, the samples showed an excellent resistance against elevated temperatures (150 degrees C) and remained superhydrophobic; however, further increment of the annealing temperatures to 200 degrees C caused the TPU macromolecules to migrate onto the top layer of the coatings significantly reducing the water repellency, which was visually proved by SEM. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文采用基于溶液的简单方法制备了基于热塑性聚氨酯(TPU)和改性纳米二氧化硅的超疏水纳米复合涂料。主要挑战是赋予固有亲水性聚合物底物超疏水性。通过扫描电子显微镜,共聚焦显微镜和X射线光电子能谱对制备的纳米复合涂层进行表征。基于获得的结果,证明了为了获得超疏水性,在涂层的顶层上不应该存在TPU大分子,因此,为获得超疏水涂层,必须用纳米二氧化硅颗粒完全覆盖涂层的顶层。涂层的机械和热阻是超疏水表面商业化的主要挑战,分别通过跌落冲击和热退火试验进行了研究。事实证明,与纯二氧化硅纳米涂层相比,使用TPU作为底层可以提高涂层的机械强度。此外,样品对高温(150摄氏度)表现出极好的抵抗力,并保持超疏水性。然而,退火温度进一步升高至200摄氏度会导致TPU大分子迁移到涂层的顶层,从而显着降低了拒水性,这在SEM上已得到了直观的证明。 (C)2015 Elsevier B.V.保留所有权利。

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