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棉纤维经乙醇溶液中含氟单体原位等离子体聚合得到的疏水涂层。

Hydrophobic Coatings on Cotton Obtained by in Situ Plasma Polymerization of a Fluorinated Monomer in Ethanol Solutions.

机构信息

Institute of Advanced Chemistry of Catalonia (IQAC), Department of Chemical and Surfactants Technology, Plasma Chemistry Group, Consejo Superior de Investigaciones Cientificas (CSIC) , Barcelona 08034, Spain.

Institute of Textiles and Clothing, The Hong Kong Polytechnic University , Hung Hom, Kowloon Hong Kong.

出版信息

ACS Appl Mater Interfaces. 2017 Feb 15;9(6):5513-5521. doi: 10.1021/acsami.6b15812. Epub 2017 Feb 6.

Abstract

Plasma polymerization using hydrophobic monomers in the gas phase is a well-known technology to generate hydrophobic coatings. However, synthesis of functional hydrophobic coatings using plasma technology in liquids has not yet been accomplished. This work is consequently focused on polymerization of a liquid fluorinated monomer on cotton fabric initiated by atmospheric plasma in a dielectric barrier discharge configuration. Functional hydrophobic coatings on cotton were successfully achieved using in situ atmospheric plasma-initiated polymerization of fluorinated monomer dissolved in ethanol. Gravimetric measurements reveal that the amount of polymer deposited on cotton substrates can be modulated with the concentration of monomer in ethanol solution, and cross-linking reactions occur during plasma polymerization of a fluorinated monomer even without the presence of a cross-linking agent. FTIR and XPS analysis were used to study the chemical composition of hydrophobic coatings and to get insights into the physicochemical processes involved in plasma treatment. SEM analysis reveals that at high monomer concentration, coatings possess a three-dimensional pattern with a characteristic interconnected porous network structure. EDX analysis reveals that plasma polymerization of fluorinated monomers takes place preferentially at the surface of cotton fabric and negligible polymerization takes place inside the cotton fabric. Wetting time measurements confirm the hydrophobicity of cotton coatings obtained although equilibrium moisture content was slightly decreased. Additionally, the abrasion behavior and resistance to washing of plasma-coated cotton has been evaluated.

摘要

利用气相中的疏水性单体进行等离子体聚合是生成疏水性涂层的一种成熟技术。然而,利用等离子体技术在液相中合成功能性疏水性涂层尚未实现。因此,本工作主要聚焦于在介质阻挡放电配置中的大气压等离子体引发下,在棉织物上聚合液态氟化单体。通过将溶解在乙醇中的氟化单体在大气等离子体中进行原位引发聚合,成功地在棉织物上制备了功能性疏水性涂层。通过重量法测量发现,沉积在棉织物基底上的聚合物量可以通过乙醇溶液中单体浓度进行调节,并且即使没有交联剂存在,氟化单体的等离子体聚合也会发生交联反应。FTIR 和 XPS 分析用于研究疏水性涂层的化学组成,并深入了解等离子体处理涉及的物理化学过程。SEM 分析表明,在单体浓度较高时,涂层具有三维图案,具有特征性的互联多孔网络结构。EDX 分析表明,氟化单体的等离子体聚合优先在棉织物表面发生,而棉织物内部几乎没有聚合发生。尽管平衡水分含量略有降低,但润湿时间测量证实了所获得的棉涂层具有疏水性。此外,还评估了等离子体涂层棉的耐磨性和耐洗性。

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