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Chitosan Based Regenerated Cellulose Fibers Functionalized with Plasma and Ultrasound

机译:壳聚糖基再生纤维素纤维的等离子和超声功能

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The great potential of regenerated cellulose fibers, which offer excellent possibilities as a matrix for the design of bioactive materials, was the lead for our research. We focused on the surface modification of fibers to improve the sorption properties of regenerated cellulose and biocomposite regenerated cellulose/chitosan fibers, which are on the market. The purpose of our investigation was also the modification of regenerated cellulose fibers with the functionalization by chitosan as a means of obtaining similar properties to biocomposite regenerated cellulose/chitosan fibers on the market. Argon gas plasma was used for fiber surface activation and chitosan adsorption. Ultrasound was also used as a treatment procedure for the surface activation of regenerated cellulose fibers and treatment with chitosan. Analyses have shown that ultrasonic energy or plasma change the accessibility of free functional groups, structure and reactivity, especially in regenerated cellulose fibers. Changes that occurred in the morphology and in the structure of fibers were also reflected in their physical and chemical properties. Consequently, moisture content, sorption properties and water retention improved.
机译:再生纤维素纤维的巨大潜力,为设计生物活性材料提供了极好的可能性,是我们研究的先导。我们专注于纤维的表面改性,以改善市场上出售的再生纤维素和生物复合再生纤维素/壳聚糖纤维的吸附性能。我们研究的目的还在于通过壳聚糖的功能化对再生纤维素纤维进行改性,以使其获得与市场上的生物复合再生纤维素/壳聚糖纤维相似的性能。氩气等离子体用于纤维表面活化和壳聚糖吸附。超声波还用作再生纤维素纤维表面活化和壳聚糖处理的处理程序。分析表明,超声波能量或等离子体会改变自由官能团,结构和反应性的可及性,尤其是在再生纤维素纤维中。纤维的形态和结构发生的变化也反映在其物理和化学性质上。因此,提高了水分含量,吸附性能和保水性。

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