School of Chemical Engineering, Nanjing University of Science and Technology , Nanjing 210094, China.
ACS Nano. 2013 Dec 23;7(12):11397-408. doi: 10.1021/nn4053233. Epub 2013 Nov 26.
The present paper introduces an intelligent anticorrosion coating, based on the mechanized hollow mesoporous silica nanoparticles (HMSs) as smart nanocontainers implanted into the self-assembled nanophase particles (SNAP) coating. As the key component, smart nanocontainers assembled by installing supramolecular nanovalves in the form of the bistable pseudorotaxanes on the external surface of HMSs realize pH-responsive controlled release for corrosion inhibitor, caffeine molecules. The smart nanocontainers encapsulate caffeine molecules at neutral pH, and release the molecules either under acidic or alkaline conditions, which make them spontaneously experience the pH excursions arisen from corrosion process and respond quickly. The intelligent anticorrosion coating was deposited on the surface of aluminum alloy AA2024 and investigated by electrochemical impedance spectroscopy and scanning vibrating electrode technique (SVET). Compared with the pure SNAP coating, the well-dispersed smart nanocontainers not only delay the penetration rate of corrosive species but also repair damaged aluminum oxide layer to maintain the long term anticorrosion behavior. From the experimental results of SVET, the smart nanocontainers with the acid and alkaline dual stimuli-responsive characteristics can simultaneously suppress corrosion activities on microanodic and microcathodic regions, demonstrating an excellent self-healing functionality.
本文介绍了一种智能防腐涂层,它以机械中空介孔硅纳米粒子(HMSs)为智能纳米容器,植入自组装纳米相颗粒(SNAP)涂层中。作为关键组成部分,智能纳米容器通过在 HMSs 外表面上以双稳态伪轮烷的形式安装超分子纳米阀来组装,实现了对缓蚀剂咖啡因分子的 pH 响应控制释放。智能纳米容器在中性 pH 下封装咖啡因分子,在酸性或碱性条件下释放分子,这使得它们能够自发经历腐蚀过程引起的 pH 变化,并迅速做出响应。智能防腐涂层沉积在铝合金 AA2024 的表面,并通过电化学阻抗谱和扫描振动电极技术(SVET)进行了研究。与纯 SNAP 涂层相比,良好分散的智能纳米容器不仅延迟了腐蚀性物质的渗透速率,而且还修复了受损的氧化铝层,以保持长期的防腐性能。从 SVET 的实验结果来看,具有酸碱性双重刺激响应特性的智能纳米容器可以同时抑制微阳极和微阴极区域的腐蚀活性,表现出优异的自修复功能。