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Aliphatic-aromatic polyester-polyaniline composites: preparation, characterization, antibacterial activity and conducting properties

机译:脂肪族-芳香族聚酯-聚苯胺复合材料:制备,表征,抗菌活性和导电性能

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Polyfbutylene adipate-co-terephthalate) (PBAT) composites containing polyaniline (PANI) were prepared using a melt blending process. Acrylic-acid-grafted PBAT (PBAT-g-AA) and PANI were used to improve the compatibility and dispersibility of PANI within the PBAT matrix. The composites were characterised morphologically using scanning electron microscopy, chemically using Fourier transform IR spectrometry and ~(13)C solid-state nuclear magnetic resonance, and optically using UV-visible spectroscopy. The electrical conductivity of the composites was also evaluated with a resistance tester and a cyclic voltameter. Escherichia coli (BCRC 10239) was chosen as the standard bacterium for determining the antibacterial properties of the composite materials. The anti-static properties of the composites were also evaluated. The PBAT-g-AA/PANI composite showed markedly enhanced antibacterial and anti-static properties due to the formation of amide bonds by the condensation of the carboxylic acid groups of PBAT-g-AA with the amino groups of PANI. The optimal level of PANI was 9 wt%, as excess PANI led to separation of the two organic phases, lowering their compatibility.
机译:使用熔融共混工艺制备了含有聚苯胺(PANI)的聚己二酸丁二酯-对苯二甲酸对苯二甲酸酯(PBAT)复合材料。丙烯酸接枝的PBAT(PBAT-g-AA)和PANI用于提高PANI在PBAT基质中的相容性和分散性。使用扫描电子显微镜对复合材料进行形貌表征,使用傅里叶变换红外光谱和〜(13)C固态核磁共振进行化学表征,并使用紫外-可见光谱进行光学表征。还使用电阻测试仪和循环伏安仪评估了复合材料的电导率。选择大肠杆菌(BCRC 10239)作为确定复合材料抗菌性能的标准细菌。还评估了复合材料的抗静电性能。 PBAT-g-AA / PANI复合材料由于通过PBAT-g-AA的羧酸基团与PANI的氨基缩合形成酰胺键而显示出显着增强的抗菌和抗静电性能。 PANI的最佳含量为9 wt%,因为过量的PANI导致两个有机相分离,从而降低了它们的相容性。

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