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棉织物上的无氟纳米颗粒涂层:比较二氧化硅-二氧化硅-氧化锌纳米结构的紫外线防护和疏水性能

Fluorine-free nanoparticle coatings on cotton fabric: comparing the UV-protective and hydrophobic capabilities of silica silica-ZnO nanostructures.

作者信息

Liu Irene ChaoYun, Hu Xin, Fei Bin, Lee Chenghao, Fan Suju, Xin John H, Noor Nuruzzaman

机构信息

The Hong Kong Polytechnic University, School of Fashion and Textiles, Materials Synthesis and Processing Lab Hung Hom Kowloon Hong Kong SAR

出版信息

RSC Adv. 2024 Jan 31;14(7):4301-4314. doi: 10.1039/d3ra08835a.

Abstract

Robust, hydrophobic woven cotton fabrics were obtained through the sol-gel dip coating of two different nanoparticle (NP) architectures; silica and silica-ZnO. Water repellency values as high as 148° and relatively low tilt angles for fibrous fabrics (12°) were observed, without the need for fluorinated components. In all cases, this enhanced functionality was achieved with the broad retention of water vapor permeability characteristics, , less than 10% decrease. NP formation routes indicated direct bonding interactions in both the silica and silica-ZnO structures. The physico-chemical effects of NP-compatibilizer (, polydimethoxysilane (PDMS) and -octyltriethoxysilane (OTES) at different ratios) coatings on cotton fibres indicate that compatibilizer-NP interactions are predominantly physical. Whenever photoactive ZnO-containing additives were used, there was a minor decrease in hydrophobic character, but order of magnitude increases in UV-protective capability (, UPF > 384); properties which were absent in non-ZnO-containing samples. Such water repellency and UPF capabilities were stable to both laundering and UV-exposure, resisting the commonly encountered UV-induced wettability transitions associated with photoactive ZnO. These results suggest that ZnO-containing silica NP coatings on cotton can confer both excellent and persistent surface hydrophobicity as well as UV-protective capability, with potential uses in wearables and functional textiles applications.

摘要

通过对两种不同纳米颗粒(NP)结构(二氧化硅和二氧化硅-氧化锌)进行溶胶-凝胶浸涂,获得了坚固的疏水性机织棉织物。在不使用含氟成分的情况下,观察到纤维织物的拒水值高达148°,倾斜角相对较低(12°)。在所有情况下,这种增强的功能都是在水蒸气透过率特性广泛保留的情况下实现的,降低幅度小于10%。NP形成途径表明在二氧化硅和二氧化硅-氧化锌结构中都存在直接键合相互作用。NP增容剂(不同比例的聚二甲基硅氧烷(PDMS)和辛基三乙氧基硅烷(OTES))涂层对棉纤维的物理化学影响表明,增容剂与NP的相互作用主要是物理作用。每当使用含光活性氧化锌的添加剂时,疏水性会略有下降,但紫外线防护能力会有数量级的提高(UPF>384);不含氧化锌的样品则没有这些性能。这种拒水和UPF能力对洗涤和紫外线照射都很稳定,能够抵抗与光活性氧化锌相关的常见紫外线诱导的润湿性转变。这些结果表明,棉织物上含氧化锌的二氧化硅NP涂层可以赋予优异且持久的表面疏水性以及紫外线防护能力,在可穿戴设备和功能性纺织品应用中具有潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcd6/10828638/8a0505d9e964/d3ra08835a-f1.jpg

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