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Chemical Modification of Cotton Fabrics by a Bifunctional Cationic Polymer for Salt-Free Reactive Dyeing

机译:双官能阳离子聚合物的棉织物化学改性,用于无盐活性染色

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Cotton modification exhibited great potential in the fabric dyeing industry. A bifunctional cationic polymer with a moderate cationic degree and low molecular weight was achieved via free radical polymerization between dimethyl diallyl ammonium chloride and allyl glycidyl ether. Then, it was further utilized for the modification of cotton fabrics. The formation of the cationic polymer was identified using Fourier transform infrared and nuclear magnetic resonance spectroscopies. The structure and properties of both treated and untreated cotton were analyzed by X-ray photoelectron spectroscopy and scanning electron microscopy. The modified cotton fabrics could be salt-free dyed with reactive dyes at low temperatures. While obtaining satisfactory color fastness and leveling properties, the dyeability of the modified cotton was improved significantly compared with the conventional dyeing of native cotton. Besides, the prepared cationic polymer has good flocculating properties to avoid secondary pollution, suggesting high potential for achieving an economical and eco-friendly dyeing process.
机译:棉花改装在织物染色工业中表现出极大的潜力。通过双烯丙基氯化铵和烯丙基缩水甘油醚之间的自由基聚合实现具有中等阳离子度和低分子量的双官能阳离子聚合物。然后,进一步用于改性棉织物。使用傅里叶变换红外和核磁共振光谱鉴定阳离子聚合物的形成。通过X射线光电子能谱和扫描电子显微镜分析处理和未处理棉的结构和性质。改性棉织物可以在低温下用反应性染料染色。在获得令人满意的色牢度和平整性质的同时,与天然棉的常规染色相比,改性棉的可染性显着改善。此外,制备的阳离子聚合物具有良好的絮凝性能,以避免二次污染,表明实现经济型和环保染色过程的高潜力。

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