INFLUENCE OF POLYMER SOLUTION PROPERTIES ON THE ELECTROACTIVE BEHAVIOR OF NONWOVEN MATERIALS

Rigel Antonio Olvera Bernal, Roman O. Olekhnovich, Mayya V. Uspenskaya
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Abstract

The aim of this study was to analyze the influence of different acetic acid concentration used in the chitosan/PVA solutions, had on the electroactive response of fibers. Chitosan/PVA fibers were obtained by electrospinning process. The diameters of the electrospun fibers increased as the concentration of acetic acid was higher in solutions. The electroactive properties of the fibers were tested on an electrochemical cell at different pH. The proportion of free amino present of the obtained fibers was determined by deconvoluting the FTIR spectra. Fibers obtained from chitosan/PVA solutions with 10 % of acetic acid had an average diameter of 465 nm, while fiber obtained from solution with 80% acetic acid had an average diameter of 987 nm. The proportion of free amino observed from the deconvolution results was proportionally to the electroactive properties of the material. Fibers obtained from solution containing 30% acetic acid exhibited the fastest speed displacement (2.05 mm s-1), from the deconvolution of its spectra was observed that the proportion of free amino (8.71%) was the highest from all samples
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聚合物溶液性质对非织造材料电活性的影响
研究了壳聚糖/聚乙烯醇溶液中不同醋酸浓度对纤维电活性响应的影响。采用静电纺丝法制备壳聚糖/聚乙烯醇纤维。溶液中醋酸浓度越高,静电纺丝纤维的直径越大。在电化学电池上测试了纤维在不同ph值下的电活性。通过对FTIR光谱进行反卷积来确定纤维中游离氨基的比例。当乙酸浓度为10%时,壳聚糖/聚乙烯醇溶液得到的纤维平均直径为465 nm,当乙酸浓度为80%时,得到的纤维平均直径为987 nm。从反褶积结果中观察到的游离氨基的比例与材料的电活性性质成正比。在含30%乙酸溶液中得到的纤维位移速度最快(2.05 mm s-1),对其光谱进行反褶积,游离氨基酸的比例最高(8.71%)
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