Department of Materials Science and Engineering, Sharif University of Technology, Tehran, Iran.
J Biomater Sci Polym Ed. 2024 Sep;35(13):2020-2048. doi: 10.1080/09205063.2024.2365047. Epub 2024 Jun 16.
This study explores the corrosion resistance and antibacterial properties of a PTFE + TiO/Ag coating applied to 316 L stainless steel. To enhance adhesion, a polydopamine interlayer was chemically deposited onto the steel surface. The PTFE + TiO coating was subsequently applied through immersion, followed by the deposition of silver nanoparticles using a chemical method. Optimization of the polydopamine interlayer involved varying temperature, time, stirring speed, and drying parameters. The optimal conditions for the polydopamine interlayer were determined to be 60 °C for 1 h, 300 rpm stirring, and 24-h drying in a freeze dryer. Analytical results demonstrated that both the PTFE + TiO and PTFE/PTFE + TiO/Ag coatings exhibited exceptional corrosion resistance, with corrosion currents of 3.3 × 10 and 3.2 × 10 μA/cm, respectively. Antibacterial assessments showcased the remarkable ability of the PTFE/PTFE + TiO/Ag coating, containing 5% silver content, to effectively inhibit bacterial penetration within a 6.5 mm radius. Furthermore, this coating displayed a water contact angle of 143°, classifying it as a hydrophobic coating. The photocatalytic efficiency (Rs) was determined to be 3.18 × 10 A/W, a performance level comparable to that of a standard UV sensor. These findings underscore the substantial enhancements in corrosion resistance, antibacterial performance, and hydrophobic characteristics achieved with the PTFE + TiO/Ag coating, particularly through the novel optimization of the polydopamine interlayer. This coating exhibits great promise for multifunctional protective applications in diverse fields, particularly demonstrating its suitability for implants and bio-coatings.
本研究探索了应用于 316L 不锈钢的 PTFE+TiO/Ag 涂层的耐腐蚀和抗菌性能。为了提高附着力,通过化学沉积在钢表面上沉积了聚多巴胺中间层。然后通过浸渍将 PTFE+TiO 涂层施加,随后通过化学方法沉积银纳米粒子。优化聚多巴胺中间层涉及改变温度、时间、搅拌速度和干燥参数。聚多巴胺中间层的最佳条件确定为 60°C 下 1 小时、300rpm 搅拌和在冷冻干燥器中干燥 24 小时。分析结果表明,PTFE+TiO 和 PTFE/PTFE+TiO/Ag 涂层均表现出优异的耐腐蚀性,腐蚀电流分别为 3.3×10 和 3.2×10 μA/cm。抗菌评估展示了 PTFE/PTFE+TiO/Ag 涂层的卓越能力,其中含有 5%的银含量,能够有效地抑制细菌在 6.5mm 半径内的渗透。此外,该涂层的水接触角为 143°,被归类为疏水性涂层。光催化效率(Rs)确定为 3.18×10 A/W,与标准 UV 传感器的性能水平相当。这些发现突出了 PTFE+TiO/Ag 涂层在耐腐蚀、抗菌性能和疏水性方面的显著增强,特别是通过对聚多巴胺中间层的新优化实现的。该涂层在各种领域的多功能保护应用中具有很大的应用前景,特别是在植入物和生物涂层方面表现出了其适用性。