Patra Ramay, Santhosh Malothu, Kauveri Gobi Vengatajalabathy, Subasri Raghavan
Centre for Sol-Gel Coatings, International Advanced Research Centre for Powder Metallurgy and New Materials (ARCI), Balapur, Hyderabad 500 005, Telangana, India.
Department of Chemistry, National Institute of Technology Warangal, Hanumakonda 506 004, Telangana, India.
Langmuir. 2024 Mar 19;40(11):6035-6050. doi: 10.1021/acs.langmuir.4c00269. Epub 2024 Mar 4.
Development of smart coatings incorporated with corrosion indicators that can warn of corrosion through signaling the alteration of pH or metal-ion concentration at the corrosion site, and simultaneously mitigate further corrosion, stands out as a highly efficient and economical approach to address corrosion issues. In this context, the present work provides a comprehensive comparison on the effectiveness of thymol blue (TB) and phenolphthalein (PhPh) in both sensing and inhibiting corrosion on mild steel. While most of the works primarily focused on independently investigating the corrosion indication behavior of different active agents, our study intends to offer valuable insights through the comparative analysis of TB and PhPh in making well-informed decisions when selecting the most effective indicator for a given set of application scenarios. Initially, TB and PhPh were dissolved in a 3.5% NaCl solution, and their ability to indicate and inhibit corrosion on mild steel was verified through a drop test and an electrochemical study, respectively. An electrochemical study and a salt spray test were carried out to evaluate the corrosion sensing and inhibiting capabilities of the coating produced on a mild steel substrate by integrating TB and PhPh in the sol-gel matrix. The synergistic effect of TB and PhPh in sensing and inhibiting corrosion was also studied by combining TB and PhPh in the sol-gel matrix. It was found that TB-based coatings showed approximately 8 times better inhibiting performance (in terms of charge transfer resistance) when compared to PhPh-based coatings, while the PhPh-based coating was around 16 times more sensitive (with respect to concentration and time) in indicating corrosion when compared to TB-based coatings on a mild steel substrate. Nevertheless, the combination of TB and PhPh in a 1:3 ratio incorporated into the sol-gel coating exhibited increased sensitivity in detecting corrosion and showed improved corrosion inhibition on mild steel.
开发含有腐蚀指示剂的智能涂层是解决腐蚀问题的一种高效且经济的方法,这种涂层可通过指示腐蚀部位pH值或金属离子浓度的变化来预警腐蚀,并同时减轻进一步的腐蚀。在此背景下,本研究对百里酚蓝(TB)和酚酞(PhPh)在检测和抑制低碳钢腐蚀方面的有效性进行了全面比较。虽然大多数研究主要集中于独立研究不同活性剂的腐蚀指示行为,但我们的研究旨在通过对TB和PhPh进行比较分析,为在给定的一组应用场景中选择最有效的指示剂提供有价值的见解,从而做出明智的决策。首先,将TB和PhPh溶解在3.5%的NaCl溶液中,分别通过点滴试验和电化学研究验证它们对低碳钢的腐蚀指示和抑制能力。通过电化学研究和盐雾试验,评估了将TB和PhPh整合到溶胶-凝胶基质中在低碳钢基材上制备的涂层的腐蚀传感和抑制能力。还通过在溶胶-凝胶基质中混合TB和PhPh来研究它们在传感和抑制腐蚀方面的协同效应。结果发现,与基于PhPh的涂层相比,基于TB的涂层在抑制性能(以电荷转移电阻计)方面要好约8倍,而在低碳钢基材上,基于PhPh的涂层在指示腐蚀方面(相对于浓度和时间)比基于TB的涂层敏感约16倍。然而,以1:3比例将TB和PhPh混合加入溶胶-凝胶涂层中,在检测腐蚀时表现出更高的灵敏度,并且对低碳钢的腐蚀抑制效果有所改善。