Synthesis and characterisation of an iron‐ion‐responsive coating with core–shell electrospun fibres containing a chelation agent

Liying Song, Hao Shi, Peng Han, X. Ji, Q. Cheng
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引用次数: 1

Abstract

A self‐healing coating containing an electrospun nanofibre encapsulating 3,4,5‐trihydroxy benzoic acid cyclohexyl ester (GACE) was prepared. Scanning electron microscopy and transmission electron microscopy demonstrated that the nanofibre had a core–shell structure. The shell thickness of the electrospun fibre was approximately 270 nm, while the core thickness was approximately 380 nm. The self‐healing process of the coating containing GACE nanofibres over a carbon steel surface was simulated in a 3.5 wt% NaCl solution for 30 days. Fourier‐transform infrared spectroscopy analysis revealed that the synthesised GACE reacted with iron ions and formed a stable Fe–O–C compound, which could repair the scratched coating. The self‐repair performance was evaluated through electrochemical measurements, and then a healing model was developed.
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含螯合剂的核-壳电纺纤维铁离子响应涂层的合成与表征
制备了一种包覆3,4,5 -三羟基苯甲酸环己基酯(GACE)的电纺丝纳米纤维自愈涂层。扫描电镜和透射电镜分析表明,该纳米纤维具有核-壳结构。电纺丝纤维的壳厚约为270 nm,芯厚约为380 nm。在3.5 wt% NaCl溶液中模拟了含GACE纳米纤维涂层在碳钢表面的自愈过程。傅里叶变换红外光谱分析表明,合成的GACE与铁离子反应形成稳定的Fe-O-C化合物,可以修复划伤的涂层。通过电化学测量评价了材料的自修复性能,并建立了修复模型。
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