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制备聚苯胺纳米粒子及其水分散体用于水性防腐蚀涂料。

Conducting polyaniline nanoparticles and their dispersion for waterborne corrosion protection coatings.

机构信息

Key Laboratory of Nonferrous Metal Chemistry and Resources Utilization of Gansu Province and Institute of Polymer Science and Engineering, Lanzhou University, Lanzhou 730000, China.

出版信息

ACS Appl Mater Interfaces. 2011 Jul;3(7):2694-702. doi: 10.1021/am200488m. Epub 2011 Jul 7.

Abstract

A novel approach for preparing waterborne corrosion protection polyaniline (PANI)-containing coatings was developed. First, conducting polyaniline/partially phosphorylated poly(vinyl alcohol) (PANI/P-PVA) spherical nanoparticles with significant dispersibility in aqueous media were prepared by the chemical oxidative dispersion polymerization in presence of partially phosphorylated poly(vinyl alcohol) (P-PVA). The PANI/P-PVA-containing coatings with different PANI/P-PVA contents were then prepared, employing waterborne epoxy resin as the matrix. The corrosion protection property of PANI/P-PVA-containing coatings on mild steel was investigated by salt spray test and electrochemical impedance spectroscopy (EIS) technique in 3.0 wt % NaCl aqueous solution. The results indicated that the waterborne PANI/P-PVA-containing coatings (PANI/P-PVA content, 2.5 wt %) could offer high protection because the impedance values remained at higher than 1 × 10(7) Ω cm(2) after 30 days of salt spray tests. All the results were compared with these of the waterborne coatings containing PANI nanoparticles in the emeraldine salt form (PANI ES), and the protection mechanism was also proposed with the evidence of scanning electron microscope (SEM) and X-ray photoelectron spectrometry (XPS).

摘要

开发了一种新颖的方法来制备水基腐蚀防护型聚苯胺(PANI)含涂层。首先,通过在部分磷酸化的聚(聚乙烯醇)(P-PVA)存在下的化学氧化分散聚合,制备了在水性介质中具有显著分散性的导电聚苯胺/部分磷酸化聚(聚乙烯醇)(PANI/P-PVA)球形纳米粒子。然后,采用水性环氧树脂作为基体,制备了不同 PANI/P-PVA 含量的 PANI/P-PVA 含涂层。通过盐雾试验和电化学阻抗谱(EIS)技术在 3.0 wt % NaCl 水溶液中研究了PANI/P-PVA 含涂层对低碳钢的腐蚀防护性能。结果表明,水性 PANI/P-PVA 含涂层(PANI/P-PVA 含量为 2.5 wt %)可以提供高的保护,因为在盐雾试验 30 天后,阻抗值仍保持在高于 1 × 10(7) Ω cm(2)。所有结果都与含 emeraldine 盐形式的 PANI 纳米粒子的水性涂层(PANI ES)进行了比较,并通过扫描电子显微镜(SEM)和 X 射线光电子能谱(XPS)的证据提出了保护机制。

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