材料科学
腐蚀
涂层
介电谱
沉浸式(数学)
表面改性
金属
电化学
纳米技术
复合材料
介孔材料
化学工程
沸石咪唑盐骨架
冶金
缓蚀剂
防腐
作者
Peng Xu,Xinwei Wang,Tianguan Wang,Xinyu Zhao,Jingsha Tan,Wenfeng Ge,Bo Zhang,Guozhe Meng
标识
DOI:10.1021/acsami.5c25244
摘要
In this work, we designed a core–shell structure by modifying hollow mesoporous CeO2 microspheres with a zeolitic imidazolate framework (ZIF-8). The prepared ZIF-8@HMCM can be loaded with the corrosion indicator/inhibitor 1,10-phenanthroline (Phen). ZIF-8 functionalization markedly increases the specific surface area of the nanocontainers, thereby enhancing their Phen loading capacity. More importantly, due to the stimuli-responsive nature of ZIF-8, the nanocontainers can rapidly release Phen at corrosion sites. The released Phen complexes with metal ions at coating defects, producing a distinct red coloration that enables real-time visualization of corrosion initiation. Based on these nanocontainers (ZIF-8@HMCM-Phen), we developed a multifunctional coating that combines durable corrosion resistance, self-healing ability, and early corrosion detection. Electrochemical impedance spectroscopy further confirmed its superior corrosion resistance: after 80 days of immersion in 3.50 wt % NaCl solution, the |Z|0.01 Hz of the ZIF-8@HMCM-Phen/WEP coating remained at 1.02 × 109 Ω·cm2, more than 1 order of magnitude higher than that of pure WEP. The immersion test of the scratched coating provided a rapid visual response within 15 min, enabling early identification of corrosion initiation at damaged regions. Overall, incorporating ZIF-8@HMCM-based nanocontainers into WEP coatings enables the concurrent functions of corrosion monitoring, active inhibition, and self-healing, offering a practical strategy toward durable smart anticorrosion coatings.
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