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Cold plasma-induced modification of the dyeing properties of poly(ethylene terephthalate) fibers

机译:冷等离子体诱导的聚对苯二甲酸乙二醇酯纤维染色性能的改性

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摘要

Surface modification of poly(ethylene terephthalate) (PET) fabrics induced by air radiofrequency (RF) plasma treatment has been investigated systematically as a function of plasma device parameters, to identify the plasma-polymer surface interactions prevailing under different operating conditions and leading to an increased color depth upon dyeing. Some tests have also been performed employing chemically inert argon as a feedstock gas. The dyeing properties of plasma-treated fibers were correlated to their topographical characteristics, determined by AFM analysis, and to their chemical surface composition, determined by XPS analysis, while the plasma-originated UV radiation was found to have no relevant effects in PET surface modification. The relative importance of plasma-induced surface processes, such as etching and grafting of polar species, is discussed in relation to their role in modifying PET dyeing properties.
机译:空气等离子体(RF)等离子体处理引起的聚对苯二甲酸乙二酯(PET)织物的表面改性已作为等离子体设备参数的函数进行了系统研究,以识别在不同操作条件下普遍存在的等离子体-聚合物表面相互作用并导致染色后颜色深度增加。还使用化学惰性氩气作为原料气进行了一些测试。等离子体处理过的纤维的染色特性与通过AFM分析确定的形貌特征以及通过XPS分析确定的化学表面组成有关,而发现等离子体引发的UV辐射对PET表面改性没有相关影响。讨论了等离子体诱导的表面过程(例如极性物质的蚀刻和接枝)的相对重要性,以及它们在改变PET染色性能中的作用。

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