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Fluorocarbon-Free Dual-Action Textile Finishes Based on Covalently Attached Thermoresponsive Block Copolymer Brush Coatings

机译:无氟碳双动纺织品饰面基于共价附加的热响应嵌段共聚物刷涂层

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We present fluorocarbon-free block copolymer brushes as potential systems for dual-action, i.e., soil-repellent and soil-releasing textile finishes. Polymer brushes were prepared by employing specifically engineered triblock copolymers consisting of a hydrophobic, a hydrophilic, and either a central or a terminal anchor block bearing several anchoring groups for sustainable immobilization using the "grafting to" approach on both flat Si wafers and rough cotton fabrics. The switching characteristics of both types of block copolymer brushes were investigated by exposing the brushes to conditions and stimuli that are similar to those applied during laundering in a washing machine and drying in a laundry dryer, respectively. Contact angle measurements were performed to evaluate the polarity and wettability of the block copolymer brushes after treatment in hot water and in air, or in a vacuum at elevated temperatures simulating the washing and the drying procedure of a textile fabric. While the block copolymer brush with the terminal anchor showed only minor changes in terms of the wetting characteristics and the brush morphology upon the applied stimuli, the block copolymer brush with the central anchoring block exhibited a significant change from a hydrophilic (soil-releasing) to a hydrophobic (stain-repellent) surface. This switching behavior was reversible and could be achieved on both, flat Si wafers, and much more pronounced on rough cotton fabrics. Atomic force microscopy and angle-resolved X-ray photoelectron spectroscopy investigations further indicated a complete rearrangement of the brush morphology. Accordingly, we regard this type of block copolymer brushes as a system that fully meets the basic requirements for an application as a dual-action textile finish, which can be reversibly switched with respect to water repulsion.
机译:我们将氟碳嵌段共聚物刷作为双作用,即土壤排斥和土壤释放纺织品涂层的潜在系统。通过采用由疏水性,亲水和中央或端子锚固块组成的特异性工程化的三嵌段共聚物来制备聚合物刷,其载有几个锚固组用于可持续固定的锚固基团,该锚固件在扁平Si晶片和粗棉织物上使用“嫁接至”方法。通过将刷子暴露于与洗涤机中洗涤过程中施加的条件和刺激相似的条件和刺激来研究两种类型的嵌段共聚物刷的切换特性。进行接触角测量以评价在热水和空气中处理后嵌段共聚物刷的极性和润湿性,或在升高的温度下在模拟洗涤和纺织织物的干燥过程的温度下真空。虽然具有端子锚定的嵌段共聚物刷仅显示润湿特性的微小变化和施加的刺激上的刷子形态,但具有中央锚固块的嵌段共聚物刷子从亲水性(释放)到中有显着变化疏水性(脱脂)表面。这种切换行为是可逆的,可以在粗糙的棉布织物上进行扁平Si晶片和更明显的。原子力显微镜和角度分辨的X射线光电子能谱研究进一步表明了刷形态的完全重排。因此,我们认为这种类型的嵌段共聚物刷作为完全满足应用作为双动作纺织品的基本要求的系统,这可以相对于水排斥来可逆地切换。

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