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Ag-CuO/环氧树脂杂化纳米复合材料作为铜基底上的防腐涂层和自清洁涂层

Ag-CuO/epoxy hybrid nanocomposites as anti-corrosive coating and self-cleaning on copper substrate.

作者信息

Abdel-Karim Amal M, Ahmed Yousra M, El-Masry Mai M

机构信息

Physical Chemistry Department, National Research Centre, 33 El Bohouth Street, Dokki, Giza, 12622, Egypt.

Civil Engineering Department, Higher Engineering Institute, Thebes Academy, Cairo, 11434, Egypt.

出版信息

Sci Rep. 2023 Nov 7;13(1):19248. doi: 10.1038/s41598-023-46533-x.

Abstract

This study aims to prepare Ag-CuO nanoparticles and assess their efficiency in protecting the copper substrate. The prepared Ag-CuO nanoparticle was characterized using, Fourier-transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), scanning electron microscope/energy-dispersive X-ray (SEM/EDX), and transmission electron microscope (TEM). The anticorrosion performance of the epoxy coatings containing various weight percentages of Ag-CuO nanoparticles was evaluated in 3.5 wt% NaCl solution using potentiodynamic polarization (PDP), and electrochemical impedance spectroscopy (EIS) techniques. The results showed that corrosion potential shifted from - 0.211 V for uncoated copper to - 0.120 V for 5.0 wt% Ag-CuO/epoxy hybrid nanocomposite. Electrochemical measurements indicated that the coating 5.0 wt% coating exhibited excellent inhibiting properties with an efficiency of 99.9%. Wettability and mechanical properties were measured for both uncoated and coated copper substrates. The contact angle for 5.0 wt% coating is equal to 104° enhancing the hydrophobic character of the surface. The study clearly establishes that the hybrid composite has a significant potential for protecting the copper substrate.

摘要

本研究旨在制备银-氧化铜纳米颗粒并评估其对铜基底的保护效果。使用傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)、扫描电子显微镜/能量色散X射线(SEM/EDX)和透射电子显微镜(TEM)对制备的银-氧化铜纳米颗粒进行表征。采用动电位极化(PDP)和电化学阻抗谱(EIS)技术,在3.5 wt%的氯化钠溶液中评估了含有不同重量百分比银-氧化铜纳米颗粒的环氧涂层的防腐性能。结果表明,未涂层铜的腐蚀电位从-0.211 V变为5.0 wt%银-氧化铜/环氧杂化纳米复合材料的-0.120 V。电化学测量表明,5.0 wt%的涂层表现出优异的抑制性能,效率达99.9%。对未涂层和涂层铜基底的润湿性和机械性能进行了测量。5.0 wt%涂层的接触角为104°,增强了表面的疏水特性。该研究明确表明,这种杂化复合材料在保护铜基底方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/198e/10630502/030612f32dc5/41598_2023_46533_Fig1_HTML.jpg

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