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首页> 外文期刊>Polymers & Polymer Composites >Preparing chitosan-polyaniline nanocomposite film and examining its mechanical, electrical, and antimicrobial properties
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Preparing chitosan-polyaniline nanocomposite film and examining its mechanical, electrical, and antimicrobial properties

机译:制备壳聚糖聚苯胺纳米复合膜并检查其机械,电气和抗微生物性质

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In recent years, development and progress in modern packaging resulting from degradable natural resources have grown remarkably. In this study, chitosan-polyaniline film was prepared with a combination of different concentrations of polyaniline and various synthesis times to produce antimicrobial and biodegradable packaging film. The physical, electrical, and mechanical properties of the films were investigated. The interaction between chitosan and polyaniline was confirmed by Fourier-transform infrared spectroscopy (FTIR) and X-ray diffraction patterns. The size and morphology of the synthesized particles were examined by scanning electron microscopy. The results indicated that the synthesized polyaniline particles had a spherical shape (45-100 nm). The antimicrobial and antifungal activity of the films against Aspergillus niger fungi (antifungal area: 61.47 mm(2)) and Escherichia coli bacteria (antimicrobial area: 187.27 mm(2)) increased with increasing the concentration of polyaniline. The results obtained from the study of the effect of polyaniline on the electrical conductivity of the chitosan film showed that increasing the polyaniline concentration and synthesis time resulted in decreased electrical resistance of the film, for which the film with the highest aniline concentration and the highest synthesize time had the lowest resistance. According to the mechanical property results, tensile strength (TS) and elastic modulus were increased due to the addition of the polyaniline to the polymer matrix. The chitosan blank film had a lower TS than nanocomposites. As the final results, the chitosan-polyaniline film has good electrical conductivity, indicating that the produced film could be used in intelligent food packaging.
机译:近年来,由可降解的自然资源产生的现代包装中的开发和进展显着增长。在该研究中,用不同浓度的聚苯胺和各种合成时间的组合制备壳聚糖 - 聚苯胺膜,以产生抗微生物和可生物降解的包装膜。研究了薄膜的物理,电气和机械性能。通过傅里叶变换红外光谱(FTIR)和X射线衍射图来证实壳聚糖和聚苯胺之间的相互作用。通过扫描电子显微镜检查合成颗粒的尺寸和形态。结果表明,合成的聚苯胺颗粒具有球形(45-100nm)。抗霉菌患者的抗微生物和抗真菌活性(抗真菌面积:61.47mm(2))和大肠杆菌细菌(抗微生物面积:187.27mm(2))随着聚苯胺的浓度而增加。从研究的研究获得的结果在壳聚糖膜的导电率上的研究表明,增加了聚苯胺浓度和合成时间导致薄膜的电阻降低,其中苯胺浓度最高和最高合成的膜时间具有最低的阻力。根据机械性质结果,由于将聚苯胺加入聚合物基质,抗拉强度(TS)和弹性模量增加。壳聚糖空白膜的TS低于纳米复合材料。作为最终结果,壳聚糖 - 聚苯胺膜具有良好的电导率,表明所生产的薄膜可用于智能食品包装。

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