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首页> 外文期刊>ACS applied materials & interfaces >Robust Hyperbranched Polyester-Based Anti-Smudge Coatings for Self-Cleaning, Anti-Graffiti, and Chemical Shielding
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Robust Hyperbranched Polyester-Based Anti-Smudge Coatings for Self-Cleaning, Anti-Graffiti, and Chemical Shielding

机译:用于自清洁,防涂料和化学屏蔽的鲁棒超支化聚酯基抗涂抹涂料

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摘要

In this work, a novel anti-smudge coating system was developed by using hydroxyl-terminated hyperbranched polyester as a coating precursor, mono-hydroxyl-terminated poly(dimethylsiloxane) (PDMS) as an anti-smudge agent, and hexamethylene diisocyanate trimer as a curing agent. The resultant coatings with 0.5 wt % PDMS content incorporated are highly transparent and liquid repellent. They exhibit striking repellency against various liquids and display remarkable self-cleaning performance. Water, hexadecane, salt solution, strong alkali solution, strong acid solution, pump oil, and crude oil could slide off the coated surface without leaving any traces, and the dirt on the coated surface could be readily removed by water or oil. Besides, these coatings show potential application for anti-fingerprint and anti-graffiti due to the exceptional repellency of coated surface against artificial fingerprint liquid, oil-based ink, paint, and water-based smudge. Furthermore, they also possess superb chemical shielding ability and thus endow substrates with remarkable protection against exposure to harsh chemical conditions. Moreover, these coatings are mechanically robust against extensive abrasion, impact, and bending without compromising anti-smudge properties, and they also exhibit excellent adhesion to various substrates. Therefore, these newly developed coatings have tremendous potential for widespread applications.
机译:在这项工作中,通过使用羟基封端的超支化聚酯作为涂料前体,单羟基封端的聚(二甲基硅氧烷)(PDMS)作为抗污染剂,以及六亚甲基二异氰酸酯三聚体作为a固化剂。掺入0.5wt%PDMS含量的所得涂层是高度透明的和液体驱动的。它们展示了针对各种液体的引人注目的排斥性,并显示出显着的自清洁性能。水,十六烷,盐溶液,强碱溶液,强酸溶液,泵油和原油可以在不留下任何痕量的情况下从涂覆的表面上滑动,并且涂覆表面上的污垢可以通过水或油容易地除去。此外,这些涂层显示出防指纹和抗涂鸦的潜在应用,由于涂层表面抗涂层表面,油基油墨油漆和水基涂抹的卓越性泄漏。此外,它们还具有精湛的化学屏蔽能力,因此赋予底物具有显着保护免受暴露于苛刻的化学条件。此外,这些涂层对抗污染性能的广泛耐磨,冲击和弯曲进行机械稳健,并且它们也表现出对各种基材的优异粘附性。因此,这些新开发的涂层具有广泛应用的巨大潜力。

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