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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Facile fabrication of fluorine free zirconium zinc stearate based superhydrophobic and superoleophilic coating on cotton fabric with superior antibacterial property
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Facile fabrication of fluorine free zirconium zinc stearate based superhydrophobic and superoleophilic coating on cotton fabric with superior antibacterial property

机译:富含含有优质抗菌性质的棉织物超疏水和超级含氟锌的氟锌锌含有舒适性制造

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摘要

A simple solution technique has been adopted to fabricate in situ generated zirconium zinc stearate based superhydrophobic and superoleophilic fluorine-free coating on cotton fabric with superior antibacterial and excellent photocatalytic properties. The materials properties of the specimen such as crystallinity/crystal phase, chemical bonding, surface morphology, and surface roughness have been characterized systematically. The coated cotton derived from an optimized precursor composition shows the retention of superhydrophobicity with static water contact angle ~163 degrees after several cycles of machine laundering and mechanical abrasion. It is seen that zirconium species may have caused an enhancement in laundering durability and mechanical robustness while hierarchical morphology of zinc stearate is responsible for acquiring superior antibacterial property along with self cleaning ability of the coating to make the coated fabric promising for real life application such as military uniform, biomedical clothing/devices. In addition, the coated cotton is found to be suitable for separation of oil from oil-water mixtures with high efficiency (~99%) even after 10 cycles of repeated use. Thus, the material can be used for separation of oil from oil-contaminated industrial wastewater/marine water. Moreover, AgBr modified superhydrophobic cotton fabric shows excellent photocatalytic activity towards degradation of organic dye. This facile process can be up-scaled for commercial use.
机译:已经采用了一种简单的解决方案技术来制造原位生成的基于棉织物的超疏水和超级无氟无氟涂层,具有优异的抗菌和优异的光催化性能。系统的特征在系统地表征了样本的样品的材料特性如结晶度/晶相,化学键合,表面形貌和表面粗糙度。衍生自优化的前体组合物的涂覆棉显示在几个机器洗涤和机械磨损后,在静态水接触角〜163度的保留率。可以看出,锆物种可能引起了洗涤耐久性和机械稳健性的增强,而硬脂酸锌的等级形态负责涂层的自清洁能力,以使涂层织物成为现实寿命应用的涂层织物军服,生物医学服装/设备。此外,涂覆的棉被认为是适用于在10次重复使用的循环后的高效率(〜99%)的油水混合物中的油。因此,该材料可用于从油污的工业废水/海水中分离油。此外,AGBR改性的超疏水棉织物显示出优异的光催化活性朝向有机染料的降解。这种便捷的过程可以升高为商业用途。

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