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首页> 外文期刊>ACS applied materials & interfaces >Robust Fluorine-Free and Self-Healing Superhydrophobic Coatings by H3BO3 Incorporation with SiO2-Alkyl-Silane@PDMS on Cotton Fabric
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Robust Fluorine-Free and Self-Healing Superhydrophobic Coatings by H3BO3 Incorporation with SiO2-Alkyl-Silane@PDMS on Cotton Fabric

机译:通过H3BO3在棉织物上加入H3BO3掺入SiO 2 - 烷基硅烷@ PDMS的鲁棒氟和自愈的超疏水涂层

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摘要

Limited robustness is a serious drawback for superhydrophobic coatings and degrades the performance of superhydrophobic surfaces in practical applications. Although fluororeagents have excellent durability for superhydrophobicity, their use has been restricted due to various health and environmental concerns. In this work, we describe a facile and efficient fabrication strategy for creating robust fluorine-free superhydrophobic composite coatings that are prepared by a simple dip-dry method, in which the H3BO3-incorporated SiO2-alkyl-silane coatings are deposited on woven cotton fabric surfaces followed by polydimethylsiloxane modification. The coated surface shows a large water contact angle of 157.95 +/- 2 degrees and a small sliding hysteresis angle (SHA) of 3.8 +/- 0.6 degrees, demonstrating excellent superhydrophobicity. The coated fabric surface also exhibited robustness and durability, withstanding a tape-peeling test (under 48.05 kPa) for around 80 repetitions and sandpaper rubbing (loaded 100 g) for 40 cycles. Furthermore, the coated fabric surface displayed self-healing and oil-water separation capacities. The developed superhydrophobic coatings in this study are robust, environmentally benign, and easy to fabricate, showing promising applications in textile industries.
机译:有限的鲁棒性是超疏水涂层的严重缺点,并降低了实际应用中超疏水表面的性能。虽然氟料具有优异的超疏水性耐久性,但由于各种健康和环境问题,它们的使用受到限制。在这项工作中,我们描述了一种用于产生通过简单的浸渍方法制备的强大的无氟超疏水复合涂层的容易和有效的制造策略,其中将H3BO3掺入的SiO 2-烷基 - 硅烷涂层沉积在织造织物上表面接着是聚二甲基硅氧烷改性。涂层表面显示出157.95 +/- 2度的大的水接触角,并且小滑动滞后角(SHA)为3.8 +/- 0.6度,展示优异的超疏水性。涂覆的织物表面也表现出稳健性和耐用性,耐受胶带剥离试验(48.05kPa)约为80次重复和砂纸摩擦(装载100g)40个循环。此外,涂层织物表面显示了自愈和油水分离能力。本研究中发育的超疏水涂料是强大的,环境良好,易于制造的,在纺织工业中显示有前途的应用。

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