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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Functional finishing of animated polyester using biopolymer-based polyelectrolyte microgels
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Functional finishing of animated polyester using biopolymer-based polyelectrolyte microgels

机译:使用基于生物聚合物的聚电解质微凝胶对活性聚酯进行功能整理

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This study focuses on a microgel-based functionalization method applicable to polyester textiles for improving their hydrophilicity and/or moisture-management properties, eventually enhancing wear comfort. The method proposed aims at achieving pH-/temperature-controlled wettability of polyester within a physiological pH/temperature range. First, primary amine groups are created on polyester surfaces using ethylenediamine; second, biopolymer-based polyelectrolyte microgels are incorporated using the natural cross-linker genipin. The microgels consist of the pH-respon-sive natural polysaccharide chitosan and pH/thermoresponsive poly(N-isopropylacrylamide-co-acrylic acid) microparticles. Scanning electron microscopy confirmed the microgel presence on polyester surfaces. X-ray photoelectron spectroscopy revealed nitrogen concentration, supporting increased microscopy results. Electrokinetic analysis showed that functionalized polyester surfaces have a zero-charge point at pH 6.5, close to the microgel isoelectric point. Dynamic wetting measurements revealed that functionalized polyester has shorter total water absorption time than the reference. This absorption time is also pH dependent, based on dynamic contact angle and micro-roughness measurements, which indicated microgel swelling at different pH values. Furthermore, at 40°C functionalized polyester has higher vapor transmission rates than the reference, even at high relative humidity. This was attributed to the microgel thermoresponsiveness, which was confirmed through the almost 50% decrease in microparticle size between 20 and 40°C, as determined by dynamic light scattering measurements.
机译:这项研究的重点是基于微凝胶的功能化方法,该方法适用于聚酯纺织品,以改善其亲水性和/或水分管理性能,最终提高穿着舒适度。提出的方法旨在在生理pH /温度范围内实现聚酯的pH /温度控制的润湿性。首先,使用乙二胺在聚酯表面形成伯胺基;第二,使用天然交联剂京尼平掺入基于生物聚合物的聚电解质微凝胶。所述微凝胶由pH响应性天然多糖壳聚糖和pH /热响应性聚(N-异丙基丙烯酰胺-共丙烯酸)微粒组成。扫描电子显微镜证实在聚酯表面上存在微凝胶。 X射线光电子能谱显示氮浓度,支持增加显微镜结果。电动分析表明,功能化聚酯表面在pH 6.5处具有零电荷点,接近微凝胶等电点。动态润湿测量表明,官能化聚酯的总吸水时间比参考样品短。基于动态接触角和微粗糙度测量,该吸收时间还取决于pH,这表明微凝胶在不同的pH值下会膨胀。此外,即使在较高的相对湿度下,在40°C时,官能化的聚酯也具有比参比更高的蒸气透过率。这归因于微凝胶的热响应性,这是通过动态光散射测量确定的,在20至40°C之间的微粒大小减少了近50%证实的。

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