Szőke Árpád Ferenc, Szabó Gabriella Stefánia, Hórvölgyi Zoltán, Albert Emőke, Gaina Luiza, Muresan Liana Maria
Babeş-Bolyai University, Faculty of Chemistry and Chemical Engineering, Romania; Department of Chemical Engineering, Research Center in Electrochemistry and Non-Conventional Materials, Romania.
Budapest University of Technology and Economics, Faculty of Chemical Technology and Biotechnology, Department of Physical Chemistry and Materials Science, Budafoki út 6-8, Budapest, HU-1111, Hungary.
Carbohydr Polym. 2019 Jul 1;215:63-72. doi: 10.1016/j.carbpol.2019.03.077. Epub 2019 Mar 25.
Chitosan (Chit) coatings were prepared on zinc and glass substrates by dip-coating method. The coatings were impregnated with a non-toxic compound, indigo carmine (IC). The novel, eco-friendly, IC-loaded chitosan coatings were characterized morpho-structurally, and their corrosion protection behavior was investigated using potentiodynamic polarization and electrochemical impedance spectroscopy techniques. The surface properties of the coated samples were evaluated by wettability measurements. The thickness of the native chitosan layers and the stability of the impregnated layers in terms of dye release on glass substrates were studied by UV-vis spectrophotometry. The good corrosion inhibiting efficiency of the coatings (>90%) was attributed to the ionic crosslinking of the positively charged Chit with negatively charged IC. The Chit-IC coatings can be successfully used as model systems for chitosan-based coatings incorporating ionic inhibitors and in less demanding applications, such as temporary protective coatings for metals, removable on demand by scrubbing with mild acidic solutions.
通过浸涂法在锌和玻璃基板上制备了壳聚糖(Chit)涂层。这些涂层用无毒化合物靛蓝胭脂红(IC)进行了浸渍。对新型的、环保的、负载IC的壳聚糖涂层进行了形态结构表征,并使用动电位极化和电化学阻抗谱技术研究了它们的腐蚀防护行为。通过润湿性测量评估了涂覆样品的表面性能。通过紫外可见分光光度法研究了天然壳聚糖层的厚度以及浸渍层在玻璃基板上染料释放方面的稳定性。涂层良好的缓蚀效率(>90%)归因于带正电的Chit与带负电的IC之间的离子交联。Chit-IC涂层可成功用作包含离子抑制剂的壳聚糖基涂层的模型系统,以及用于要求较低的应用,如金属的临时保护涂层,可通过用温和酸性溶液擦洗按需去除。