CICECO-Department of Ceramics and Glass Engineering, University of Aveiro, 3810-193 Aveiro, Portugal.
Nanoscale. 2012 Feb 21;4(4):1287-98. doi: 10.1039/c2nr11536k. Epub 2012 Jan 16.
Novel self-healing protective coatings with nanocontainers of corrosion inhibitors open new opportunities for long-term anticorrosion protection of different metallic materials. In this paper a new type of functional nanoreservoir based on silica nanocapsules (SiNC) synthesized and loaded with corrosion inhibitor 2-mercaptobenzothiazole (MBT) in a one-stage process is reported for the first time. Unlike conventional mesoporous silica nanoparticles, SiNC possess an empty core and shell with gradual mesoporosity, arising from the particular conditions of the synthetic route adopted, which confers significant loading capacity and allows prolonged and stimuli-triggered release of the inhibiting species. The kinetics of inhibitor release was studied at different pH values and concentrations of NaCl. The results show a clear dependence of the release profiles on corrosion relevant triggers such as pH and Cl(-) concentration. When SiNC loaded with MBT are dispersed in NaCl solution, there is a significant decrease of the corrosion activity on aluminium alloy 2024. More importantly, when SiNC-MBT is added to a conventional water-based coating formulation, the modified coating hampers corrosion activity at the metal interface, better than in the case of direct addition of corrosion inhibitor. Furthermore, self-healing is observed before and after artificially inflicting defects in the modified coatings. As a result, the developed nanocontainers show high potential to be used in new generation of active protective coatings.
新型自修复防护涂层具有纳米抑制剂容器,为不同金属材料的长期防腐保护开辟了新的机会。本文首次报道了一种新型基于二氧化硅纳米胶囊(SiNC)的功能纳米储库,它在一步法中合成并负载了抑制剂 2-巯基苯并噻唑(MBT)。与传统的介孔二氧化硅纳米粒子不同,SiNC 具有空核和壳层,具有逐渐的介孔性,这是由于采用的合成路线的特殊条件所致,这赋予了其显著的负载能力,并允许抑制剂物种的延长和刺激触发释放。在不同的 pH 值和 NaCl 浓度下研究了抑制剂释放的动力学。结果表明,释放曲线明显依赖于腐蚀相关的触发因素,如 pH 值和 Cl(-)浓度。当负载 MBT 的 SiNC 分散在 NaCl 溶液中时,铝合金 2024 的腐蚀活性显著降低。更重要的是,当 SiNC-MBT 添加到传统的水性涂料配方中时,改性涂层比直接添加腐蚀抑制剂更能阻止金属界面的腐蚀活性。此外,在对改性涂层施加人工缺陷之前和之后都观察到了自修复。因此,所开发的纳米容器具有在新一代主动防护涂料中应用的巨大潜力。