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Electrical, thermal, morphological, and antibacterial studies of synthesized polyaniline/zinc oxide nanocomposites

机译:合成聚苯胺/氧化锌纳米复合材料的电气,热,形态学和抗菌研究

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Polyaniline/zinc oxide nanocomposites (PANI/ZnO NCs) have been synthesized by chemical oxidative polymerization of aniline in a dispersion containing different weight content of ZnO nanoparticles (NPs) (1.5, 3, 5, and 8wt% to aniline). ZnO NPs were prepared by combustion method. The structural, morphological, thermal properties of the synthesized PANI/ZnO NCs were evaluated using various analytical tools such as FTIR, TEM, SEM, TGA, and XRD. The variation of electrical conductivity and permittivity of the synthesized NCs with frequency was studied. The antibacterial activities of the NCs to Escherichia coli and Staphylococcus aureus were evaluated. FTIR data of the NCs proved the formation of H-bonding between ZnO and -NH of PANI. XRD pattern of ZnO showed hexagonal wurtzite crystalline structure of particle size 46.67nm, while the addition of ZnO NPs to poorly crystalline PANI indicated nearly the same crystalline structure. TEM of ZnO NPs showed hexagonal and pseudospherical crystalline structure, while that of PANI/ZnO NCs revealed ZnO NPs were coated in PANI matrix. SEM images displayed uniformly dispersed ZnO NPs in PANI matrix with minute agglomerated particles. Medium antibacterial activity to E. coli was obtained for all NCs, while that containing 8% ZnO revealed high activity to Staphylococcus aureus. The variation of conductivity of the NCs with frequency at room temperature showed that ZnO plays an important role in conduction mechanism such that different phases were obtained. NC containing 5% ZnO possessed the highest conductivity. The permittivity of NCs decreased with the frequency and increased with increasing temperature. The dielectric loss decreased with the frequency indicating energy conservation.
机译:通过苯胺的化学氧化聚合在含有不同重量含量的ZnO纳米颗粒(NPS)(1.5,3,5和8wt%至苯胺)的分散体中通过苯胺的化学氧化聚合来合成聚苯胺/氧化锌纳米复合材料(PANI / ZnO NCS)。通过燃烧方法制备ZnO NPS。使用FTIR,TEM,SEM,TGA和XRD等各种分析工具评估合成的PANI / ZnO NCS的结构,形态,热性质。研究了合成的NCS的电导率和介电常数的变化。评价NCS对大肠杆菌和金黄色葡萄球菌的抗菌活性。 NCS的FTIR数据证明了ZnO与Pani的ZnO和-NH之间的形成。 ZnO的XRD图案显示粒径46.67nm的六边形紫立岩晶体结构,同时将ZnO NPS加入到较差的结晶PANI中表示几乎相同的结晶结构。 ZnO NPS的TEM显示出六边形和假置的晶体结构,而PANI / ZnO NCS的ZnO NPS在PANI基质中涂覆ZnO NP。 SEM图像在PANI矩阵中均匀分散的ZnO NPS,具有微小的附聚颗粒。为所有NCS获得中抗菌活性至大肠杆菌,而含有8%的ZnO含有8%的ZnO揭示了金黄色葡萄球菌的高活性。在室温下,NCS在频率下的导电性的变化表明,ZnO在导通机构中起重要作用,使得获得不同的相。含有5%ZnO的NC具有最高的导电性。 NCS的介电常数随频率而降低,随着温度的增加而增加。介电损耗随着指示节能的频率降低。

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