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Hybrid coatings based on conducting polymers and polysiloxane chains for corrosion protection of Al alloys

机译:基于导电聚合物和聚硅氧烷链的杂交涂层用于腐蚀保护Al合金

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It was previously demonstrated that the use of a pyrrole-based silane (PySi) for surface treatment of Al alloys provides both active and barrier protection due to the deposition of a hybrid coating, containing polypyrrole and polysiloxane chains. To further explore these features, a wider range of Al substrates and different silane-based formulations in terms of silane molecule, solvent nature, water amount and pH, were investigated. Also, some tests were carried out by using aniline-based silane (AniSi). Structural/morphological characterization of the coatings, as well as the investigation of PySi solutions by diverse spectroscopic techniques, in addition to corrosion tests in NaCl, strongly support the very promising protection performance of the hybrid film. This is indicated as well from the preliminary results obtained with the AniSi-based approach. Thus, typical silane-based treatments with principally barrier action can gain in active properties if the silane compound contains monomers of conducting polymers as a funtional group.
机译:以前证明,由于含有聚吡咯和聚硅氧烷链的杂交涂层的沉积,使用吡咯基硅烷(Pysi)用于Al合金的表面处理提供了主动和阻挡保护。为了进一步探索这些特征,研究了在硅烷分子,溶剂性质,水量和pH的方面更广泛的Al基材和不同的基于硅烷的制剂。此外,通过使用苯胺基硅烷(ANISI)进行一些测试。涂层的结构/形态学表征,以及通过各种光谱技术研究Pysi溶液,除了NaCl中的腐蚀试验外,强烈支持混合膜的非常有前景的保护性能。这表明了从基于AISI的方法获得的初步结果表明。因此,如果硅烷化合物含有作为有趣组的导电聚合物的单体,则具有主要阻隔作用的典型硅烷基处理可以在活性性质中获得。

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