Composite materials based on polyurethane with fragments of poly(vinyl butyral-vinyl acetate-vinyl alcohol) copolymer in their structure filled with silver- and copper-containing silica

T. Vislohuzova, N. Galatenko, R. Rozhnova, V. Bogatyrov, M. Galaburda
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Abstract

A series of polymeric composites based on polyurethanes with copolymer fragments of poly(vinyl butyral-vinyl acetate-vinyl alcohol) and 1,6-hexamethylenediamine filled with modified precipitated silica were synthesized. The content of silver in the nanocomposites was 0.1–0.2 and of copper – 0.14 and 0.2 mmol per 1 g of SiO2 (02AgCu; AgCu and 01Ag samples). The content of silver-containing silica filler in the polymer composites was 0.1, 0.5 and 1.0 wt. %. By means of the IR spectroscopy, it has been found that a physical immobilization of modified silica in the polymeric matrix takes place due to the presence of intermolecular hydrogen bonds. The influence of fillers on the structure and properties of polymer materials, in particular, on thermophysical properties and physico-mechanical parameters (tensile strength and relative elongation at rupture), were investigated. The results of physico-mechanical tests indicate that the strength characteristics of polyurethane depend on the content and concentration of fillers. It has been found that the polymeric sample filled with 02AgCu nanocomposite (0.2 mmol of Ag and Cu per 1 g of SiO2) has the highest strength of the rupture. It has been shown that the introduction of modified silica leads to a reduction of relative elongation at rupture of polymeric nanocomposite. The highest values showed the sample filled with AgCu (0.1 and 0.12 mmol Ag and Cu, respectively, per 1 g of SiO2). The introduction of silver-containing silica nanocomposites into a polyurethane, containing polyvinylbutiral copolymer fragments, leads to an increase in tensile strength and reduction of relative elongation at rupture. Polymeric composite with 0.5 wt. % of filler had the highest values of physico-mechanical parameters. It has been shown that the thermosphysical characteristics depend on the concentration and composition of the fillers and have a nonlinear character. The synthesized nanocomposites can be effectively used as biomedical materials.
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以聚氨酯为基础的复合材料,其结构为聚乙烯醇(乙烯丁醛-醋酸乙烯-乙烯醇)共聚物的碎片,填充含银和含铜的二氧化硅
以聚乙烯醇(乙烯丁醛-醋酸乙烯-乙烯醇)和1,6-六亚二胺为共聚物片段,填充改性沉淀二氧化硅,合成了一系列以聚氨酯为基础的聚合物复合材料。纳米复合材料中银的含量为0.1 ~ 0.2 mmol / g SiO2 (02AgCu),铜的含量为0.14 mmol / g和0.2 mmol / g;AgCu和01Ag样品)。聚合物复合材料中含银硅填料的含量分别为0.1、0.5和1.0 wt %。通过红外光谱分析发现,由于分子间氢键的存在,改性二氧化硅在聚合物基体中发生了物理固定。研究了填料对高分子材料结构和性能的影响,特别是对热物理性能和物理力学参数(抗拉强度和相对断裂伸长率)的影响。物理力学试验结果表明,聚氨酯的强度特性与填料的含量和浓度有关。结果表明,以02AgCu纳米复合材料填充的聚合物样品(每1 g SiO2中含有0.2 mmol Ag和Cu)具有最高的断裂强度。研究表明,改性二氧化硅的引入降低了聚合物纳米复合材料断裂时的相对伸长率。样品中AgCu含量最高(每g SiO2中Ag和Cu含量分别为0.1和0.12 mmol)。将含银二氧化硅纳米复合材料引入含有聚乙烯丁醛共聚物碎片的聚氨酯中,可以提高拉伸强度,降低断裂时的相对伸长率。填充量为0.5 wt. %的聚合物复合材料具有最高的物理力学参数。研究表明,热物性与填料的浓度和组成有关,并具有非线性特征。所合成的纳米复合材料可以有效地用作生物医用材料。
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