聚苯胺和Fe2O3/聚苯胺复合纳米颗粒的制备、表征及抗菌活性研究

Nather Ibraheem Mohamed, S. Hassan, Khaleed J. Khalil
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引用次数: 2

摘要

采用氧化聚合法制备聚苯胺(PANI)和Fe2O3 /PANI纳米粒子组合。采用各种表征方法研究了Fe2O3 /PANI纳米颗粒的结构、形态和结构。研究结果支持了聚苯胺多晶纳米颗粒和Fe2O3 /聚苯胺球形纳米颗粒复合材料的合成。检测革兰氏阳性细菌的抗菌活性。使用不同数量的聚苯胺纳米颗粒和Fe2O3 /聚苯胺纳米颗粒复合材料检测金黄色葡萄球菌、革兰氏阴性菌、大肠杆菌和念珠菌。聚苯胺对所有微生物都有抗菌作用。另一方面,Fe2O3 /PANI纳米颗粒复合材料具有更高的抗菌活性,这可以从抑制区看出。细菌抑制区在金黄色葡萄球菌(阳性),大肠杆菌处于良好的功能秩序。随着Fe2O3 /PANI纳米颗粒复合材料浓度的增加,所有细菌的抑制区都变大。最后,采用基于静电吸引的简化机理对Fe2O3 /PANI纳米颗粒复合材料的抗菌活性进行了表征。本文制备了一种掺杂铁纳米粒子的导电聚合物,目的是测试其在细菌耐药性领域的应用。
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Preparation, Characterization, and Antimicrobial Activity of Polyaniline and Fe2O3/Polyaniline Composite Nanoparticle
An oxidative polymerization approach was used to create polyaniline (PANI) and Fe2O3 /PANI nanoparticle combination. Various characterization approaches were used to investigate the structural, morphological, and Fe2O3 /PANI nanoparticle structures. The findings support the synthesis of polycrystalline nanoparticle PANI and Fe2O3 /PANI spherical nanoparticle composites. Gram-positive bacteria are tested for antibacterial activity. Various quantities of Nanoparticles of PANI and Fe2O3 /PANI nanoparticle composites were used to test Staph-aureus and gram-negative bacteria, E-coli, and candida species. PANI has antibacterial properties against all microorganisms tested. Fe2O3 /PANI nanoparticle composites, on the other hand, have higher antibacterial activity, as evidenced by the zone of inhibition. Bacterial inhibition zones are in S. aureus (positive), and E. coli are in good functioning order. With increasing concentrations of Fe2O3 /PANI nanoparticle composites, the inhibition zones of all bacteria are larger. Finally, the antimicrobial activity of Fe2O3 /PANI nanoparticle composite is characterized using a simplified mechanism based on electrostatic attraction. In this paper, a conductive polymer doped with iron nanoparticles was fabricated for the aim of testing it in the field of bacterial resistance.
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