含咖啡因的壳聚糖-海藻酸盐纳米容器作为绿色缓蚀剂保护镀锌钢板

Crystals Pub Date : 2024-07-19 DOI:10.3390/cryst14070660
K. Kamburova, N. Boshkova, T. Radeva, M. Shipochka, N. Boshkov
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引用次数: 0

摘要

新法规的出台需要开发生态友好型系统来防止腐蚀。在这项工作中,一种天然缓蚀剂咖啡因(CAF)被封装在多糖基纳米粒子中,能够在腐蚀过程中响应性地释放 CAF。该纳米粒子是利用两种带相反电荷的天然多糖-壳聚糖(CHI)和海藻酸钠(ALG)-之间的静电络合制备的,并通过三聚磷酸钠(TPP)交联。使用动态光散射和激光多普勒测速仪对粒度分布和 zeta 电位进行了评估。用紫外光谱法评估了纳米容器的封装效率和 CAF 的释放。纳米粒子通过电沉积的方式加入到低碳钢的锌涂层中,以确保自愈合。循环伏安法显示了起始电解质中的阴极和阳极过程。通过水接触角(WCA)研究了表面疏水性。通过极化电阻(Rp)测量和电位极化(PDP)曲线估算了涂层的耐腐蚀性。利用 X 射线光电子能谱对涂层的化学成分进行了研究。所获得的数据证实了纳米颗粒/纳米容器对混合涂层保护特性的无可争议的影响--后者的 Rp 值是普通锌的两倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chitosan–Alginate Nanocontainers with Caffeine as Green Corrosion Inhibitors for Protection of Galvanized Steel
The introduction of new regulations needs to develop eco-friendly systems to prevent corrosion. In this work, a natural corrosion inhibitor caffeine (CAF) was encapsulated in polysaccharide-based nanoparticles, capable of the responsive release of CAF during corrosion. The nanoparticles were prepared using electrostatic complexation between two natural polysaccharides which are oppositely charged—chitosan (CHI) and sodium alginate (ALG), crosslinked by tripolyphosphate (TPP). The particle size distribution and zeta potential were evaluated using dynamic light scattering and laser Doppler velocimetry. The encapsulation efficiency and release of CAF from nanocontainers was evaluated with UV-spectroscopy. The nanoparticles were incorporated via electrodeposition into the zinc coating on low-carbon steel to ensure self-healing. Cyclic voltammetry demonstrated the cathodic and anodic processes in the starting electrolytes. Surface hydrophobicity was investigated by water contact angle (WCA). The corrosion resistance of the coatings was estimated with polarization resistance (Rp) measurements and potentiodynamic polarization (PDP) curves. The study of the chemical composition of the coatings was carried out with X-ray photoelectron spectroscopy. The data obtained confirm the indisputable influence of the nanoparticles/nanocontainers on the protective feature of the hybrids—the latter have about twice-higher Rp values compared to the ordinary zinc.
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