TiO2/PDMS hybrid system for constructing superhydrophobic surfaces of cotton fabrics with resistance to droplet adhesion

Wei Zhang, Che-Chun Liu, J. Yao, Shuangshuang Li
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Abstract

Purpose This study aims to produce a superhydrophobic fabric surface with a layered rough structure and which are resistant to droplet adhesion. Polydimethylsiloxane (PDMS) systems doped with stearic acid modified titanium dioxide (SA-TiO2) nanoparticles was sprayed onto the surface of cotton fabric. Design/methodology/approach This experiment therefore uses a simple method to prepare superhydrophobic textiles by spraying SA-TiO2 particles mixed with PDMS onto the surface of cotton fabrics. The effects of the ratio of stearic acid to TiO2, spraying times and tension on the apparent morphological structure and hydrophobic properties of the cotton fabric were investigated. Findings The results showed that the stearic acid-modified TiO2 nanoparticles were hydrophobic and more uniformly dispersed in the PDMS solution. When the modification ratio of stearic acid to TiO2 was 3:5, the water contact angle of cotton fabric was 155.48° and sliding angle was 6.67° under the applied tension for three times of spraying, showing superhydrophobicity. The fabric shows super hydrophobic and anti-adhesive properties to a wide range of liquids such as cola, dyeing liquids, tea, milk and simulated blood. The surface tension of the liquid shows a negative correlation with its adhesion to the fabric. Research limitations/implications The SA-TiO2 and PDMS were applied to the fabric surface by spraying, which not only gave the fabric superhydrophobic properties, but also created anti-adhesion to a wide range of droplets. Practical implications The superhydrophobic cotton fabrics prepared by this method showed good anti-adhesive behavior to common stains and simulated blood and can be used in the development of medical protective textiles. Originality/value Modification of TiO2 with stearic acid to prepare SA-TiO2 with excellent hydrophobic properties, which was mixed with PDMS to make suspensions. Fluorine-free superhydrophobic fabrics were prepared by spraying method. It also exhibited excellent anti-adhesive properties against blood, providing a reference for the preparation of self-cleaning and anti-adhesive surgical gowns.
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二氧化钛/PDMS复合体系构建抗液滴粘附棉织物超疏水表面
目的制备一种具有层状粗糙结构的耐液滴粘附超疏水织物。将硬脂酸改性二氧化钛(SA-TiO2)纳米颗粒掺杂聚二甲基硅氧烷(PDMS)体系喷涂到棉织物表面。因此,本实验采用一种简单的方法,将SA-TiO2颗粒与PDMS混合喷洒在棉织物表面,制备超疏水纺织品。研究了硬脂酸与TiO2的配比、喷涂次数和张力对棉织物表观形态结构和疏水性的影响。结果表明:硬脂酸修饰的TiO2纳米粒子具有疏水性,在PDMS溶液中分散均匀;当硬脂酸与TiO2的改性比为3:5时,在施加张力三次喷涂下,棉织物的水接触角为155.48°,滑动角为6.67°,表现出超疏水性。这种织物对可乐、染液、茶、牛奶和模拟血液等多种液体都表现出超强的疏水性和抗粘剂性能。液体的表面张力与其与织物的附着力呈负相关。研究局限性/意义将SA-TiO2和PDMS通过喷涂的方式应用于织物表面,不仅使织物具有超疏水性,而且对大范围的液滴具有抗粘附性。实际意义用该方法制备的超疏水棉织物对常见污渍和模拟血液具有良好的抗粘接性能,可用于医用防护纺织品的开发。用硬脂酸对TiO2进行改性,制备具有优异疏水性的SA-TiO2,与PDMS混合制成混悬液。采用喷雾法制备了无氟超疏水织物。同时还表现出优异的抗血液粘连性能,为自洁抗粘连手术衣的制备提供参考。
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