首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Core/shell (ZnO/polyacrylamide) nanocomposite: In-situ emulsion polymerization, corrosion inhibition, anti-microbial and anti-biofilm characteristics
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Core/shell (ZnO/polyacrylamide) nanocomposite: In-situ emulsion polymerization, corrosion inhibition, anti-microbial and anti-biofilm characteristics

机译:核/壳(ZnO /聚丙烯酰胺)纳米复合材料:原位乳液聚合,缓蚀,抗微生物和生物膜特性

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摘要

Polyacrylamide nanoparticles of 20 nm were prepared using emulsion polymerization technique. Core/shell nanocomposites of functional core of zinc oxide nanoparticles surrounded by a shell of polyacrylamide were also prepared using in-situ emulsion polymerization technique. Potentiodynamic polarization and Electrochemical impedance parameters for corrosion of carbon steel in absence and presence of ZnO/PAM.NCs indicated that, as the ZnO nanoparticles ratio increased, the corrosion inhibition efficiency increased; 50%, 80% and 94% for 1, 5 and 10% ZnO; respectively. Scanning electron micrographs of carbon steel specimen surface immersed in HCl in absence and presence of ZnO/PAM.NC10 indicated that carbon steel surface is less damaged in presence of ZnO/PAM.NC10 which confirms the observed high inhibition efficiency. ZnO/PAM.NC10 was found to display a broad spectrum antimicrobial activity with the inhibition zones in the range of 15-22 mm. ZnO/PAM.NC10 demonstrated a higher antibacterial activity for the Gram-positive than for the Gram-negative bacteria and exhibited lower minimum inhibitory concentrations and minimum bactericidal concentrations for the Gram negative bacteria than the Gram positive bacteria. Moreover, it showed MICs/MFCs against yeast and fungal strains at concentrations (250/250 ppm). Additionally, ZnO/PAM.NC10 exhibited antibiofilms activity against the standard bacterial strains; Bacillus subtilis and Escherichia coli as confirmed by SEM imaging. (C) 2016 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:使用乳液聚合技术制备了20 nm的聚丙烯酰胺纳米颗粒。还使用原位乳液聚合技术制备了被聚丙烯酰胺壳包围的氧化锌纳米颗粒功能核的核/壳纳米复合材料。在不存在和存在ZnO / PAM的情况下,碳钢腐蚀的电位动力学极化和电化学阻抗参数表明,随着ZnO纳米颗粒比例的增加,缓蚀效率提高。 1%,5%和10%ZnO为50%,80%和94%;分别。在不存在和存在ZnO / PAM.NC10的情况下,将碳钢试样表面浸入HCl的扫描电子显微镜照片表明,在存在ZnO / PAM.NC10的情况下,碳钢表面的损伤较小,这证实了所观察到的高抑制效率。发现ZnO / PAM.NC10具有宽谱的抗菌活性,其抑制区在15-22 mm范围内。 ZnO / PAM.NC10对革兰氏阳性菌的抗菌活性高于对革兰氏阴性菌的抗菌活性,并且对革兰氏阴性菌的最低抑菌浓度和最低杀菌浓度均低于革兰氏阳性菌。此外,它显示了针对浓度为250/250 ppm的酵母和真菌菌株的MIC / MFC。另外,ZnO / PAM.NC10对标准细菌菌株具有抗生物膜活性。通过SEM成像确认了枯草芽孢杆菌和大肠杆菌。 (C)2016台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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