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首页> 外文期刊>Advanced materials interfaces >Controllable Superhydrophobic Coating on Cotton Fabric by UV Induced Thiol‐ene Reaction for Wettability Patterning and Device Metallization
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Controllable Superhydrophobic Coating on Cotton Fabric by UV Induced Thiol‐ene Reaction for Wettability Patterning and Device Metallization

机译:UV诱导硫醇-NEE反应对棉织物的可控超疏水涂层,用于润湿性图案化和器件金属化

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>Superhydrophobic surfaces in nature have attracted a great deal of interest not only for fundamental understanding but also for practical applications through mimicking the nature. Fluorochemicals, due to their intrinsic low surface energy, have been widely applied as artificial superhydrophobic functionalization materials with excellent performance. However, the use of these materials for practical applications might be restricted due to the relative high cost and potential hazards to human health. In this work, a low‐cost and environmentally friendly short silane chain material is developed for fabricating superhydrophobic surfaces. A transparent photoactive coating is obtained by polycondensation of trichlorovinylsilane on cotton fabrics. The coating shows excellent superhydrophobicity. After being grafted with vinyl group, the coating can be easily functionalized using a photoclick thiol‐ene reaction. The thiol‐ene reaction has resulted in highly uniform polymer networks, which makes it possible to realize the rapid wettability switch from superhydrophobic to superhydrophilic state. Such ability makes it potentially viable to prepare well‐defined cotton patterning by printing, and realize flexible electronic devices when electrodes are printed on the fabrics.
机译: >性质上的超疏水表面不仅吸引了很多兴趣,不仅可以用于基本理解,也吸引了通过模仿性质的实际应用。由于其内在的低表面能源,含氟化合物被广泛应用于具有优异性能的人工超疏水官能化材料。然而,由于对人类健康的相对高成本和潜在的危害,可能会限制这些材料的实际应用。在这项工作中,开发出低成本和环保的短硅烷链材料用于制造超疏水表面。通过在棉织物上的三氯胆硅烷的缩聚获得透明的光活性涂层。涂层显示出优异的超流性。在用乙烯基接枝后,可以使用光偶丽硫醇-NEE反应容易地官能化涂层。硫醇-NeE反应导致高度均匀的聚合物网络,这使得可以实现从超疏水到超中性状态的快速润湿性切换。这种能力使得通过印刷制备明确定义的棉花图案,并且当电极印刷在织物上时,实现灵活的电子设备。

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