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Application of temperature and pH responsive microhydrogels for functional finishing of cotton fabric

机译:温度和pH响应微凝胶在棉织物功能整理中的应用

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This paper discusses the developing of an innovative strategy for functional finishing of cotton by application of surface modifying systems based on stimuli responsive microparticulate hydrogels. Dual responsive hydrogels in the microscale were prepared using a temperature responsive synthetic polymer (poly-NiPAAm) and a pH responsive biopolymer (chitosan). The physico-chemical characterisation and the stimuli responsiveness of the microparticulate systems have been investigated by microscopy and spectrophotometric techniques, and dynamic light scattering. In an attempt to enhance the incorporation of microparticulate hydrogel to cotton surface, carboxymethylation and aminisation methods for cotton activation have been assessed. Surface modified textile material with incorporated microparticles has been characterised by SEM and XPS techniques in order to determine surface morphology and chemical structure. The capability of the material to respond to different stimuli (pH, temperature, humidity) was studied through swelling/shrinking or hydration/dehydration kinetics and equilibrium using a gravimetric method.
机译:本文讨论了通过基于刺激响应性微粒水凝胶的表面改性系统的应用来开发棉花功能性整理的创新策略。使用温度响应性合成聚合物(poly-NiPAAm)和pH反应性生物聚合物(壳聚糖)制备了微米级的双响应水凝胶。通过显微镜和分光光度技术以及动态光散射研究了微粒系统的理化特性和刺激响应性。为了增强微粒水凝胶向棉花表面的掺入,已经评估了用于棉花活化的羧甲基化和氨化方法。为了确定表面形态和化学结构,已经通过SEM和XPS技术对具有掺入微粒的表面改性的纺织材料进行了表征。使用重量分析法通过溶胀/收缩或水合/脱水动力学和平衡研究了材料对不同刺激(pH,温度,湿度)的反应能力。

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