Effect of surfactant concentration in modifying solution on corrosion properties of the coatings based on vinyltrimethoxysilane (VTMS) and poly(3,4-ethylenedioxythiophene) (PEDOT)

A. Kucharczyk, L. Adamczyk, K. Miecznikowski
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Abstract

This paper presents an analysis of the structure and physicochemical properties of coatings based on an organofunctional silane (VTMS), a conductive polymer (PEDOT), and a surfactant (polyoxyethylene glycol monolauryl ether BRIJ).The coatings were deposited on X20Cr13 stainless steel and glassy carbon specimens using sol-gel immersion. The obtained coatings were characterised in terms of topography, microstructure, roughness, adhesion to the steel substrate, thickness, and corrosion resistance. Corrosion tests were conducted in sulfate environments with pH = 2 without or with the addition of Cl- ions.The use of different surfactant concentrations in the modifying solution is intended to improve the deposition efficiency and increase the degree of dispersion of silane and conducting polymer.The tested coatings were found to slow down the corrosion of the steel substrate, thus effectively protecting it from this phenomenon. The use of a surfactant compound is intended to increase the degree of dispersion of silane and polymer in the modifying solution to improve deposition efficiency.Test carried out in corrosive media have shown that the coatings proposed in the above work, based on VTMS silane, PEDOT polymer and BRIJ surfactant, significantly increase the corrosion resistance of the tested materials, which confirms their effectiveness and possibility of application in various industries.The novelty of this paper is the use of silane (VTMS), polymer (PEDOT) and surfactant (BRIJ) as components of the anticorrosion coating.
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改性溶液中表面活性剂浓度对乙烯基三甲氧基硅烷(VTMS)和聚3,4-乙烯二氧噻吩(PEDOT)涂层腐蚀性能的影响
本文分析了基于有机功能硅烷(VTMS)、导电聚合物(PEDOT)和表面活性剂(聚氧乙烯单月桂醚BRIJ)的涂层的结构和物理化学性能。采用溶胶-凝胶法在X20Cr13不锈钢和玻碳试样上沉积了涂层。所获得的涂层在形貌、微观结构、粗糙度、对钢基体的附着力、厚度和耐腐蚀性方面进行了表征。腐蚀试验在pH=2的硫酸盐环境中进行,不添加或添加Cl-离子。在改性溶液中使用不同浓度的表面活性剂旨在提高沉积效率并增加硅烷和导电聚合物的分散度。测试的涂层可以减缓钢基体的腐蚀,从而有效地保护其免受这种现象的影响。表面活性剂化合物的使用旨在增加硅烷和聚合物在改性溶液中的分散度,以提高沉积效率。在腐蚀性介质中进行的测试表明,上述工作中提出的基于VTMS硅烷、PEDOT聚合物和BRIJ表面活性剂的涂层显著提高了被测材料的耐腐蚀性,这证实了它们在各个行业中应用的有效性和可能性。本文的新颖之处在于使用硅烷(VTMS)、聚合物(PEDOT)和表面活性剂(BRIJ)作为防腐涂层的组分。
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来源期刊
Archives of materials science and engineering
Archives of materials science and engineering Materials Science-Materials Science (all)
CiteScore
2.90
自引率
0.00%
发文量
15
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