基于 Ti3C2Tx 的多功能环氧复合涂层,实现智能响应和耐腐蚀/耐磨性

IF 6.5 2区 材料科学 Q1 CHEMISTRY, APPLIED
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引用次数: 0

摘要

Ti3C2Tx与纳米容器的不合理搭配导致基于Ti3C2Tx的多功能环氧复合涂层性能下降的问题依然存在。本文将同时含有硫氰酸钾和十六烷基三甲基溴化铵(CTAB)的介孔 SiO2 纳米容器(SNT)负载在基于 MXene 的平台(SNT-on-MP)上,实现了一种新型环氧涂层(SNT-on-MP@EP),具有自预警、自修复、防腐蚀和抗磨损等综合功能。在受损区域,硫氰酸基团与 Fe3+ 离子结合形成血红色显示,形成的配位化合物和作为缓蚀剂的 CTAB 沉积在金属基材上,从而显示出智能响应功能。此外,由于被动和主动的协同保护功能,在盐水环境中暴露 4 周后,SNT-on-MP@EP 的最低频率阻抗值保持在 5.74 × 107 Ω-cm2,与纯环氧涂层相比提高了两个数量级。在往复滑动摩擦条件下,SNT-on-MP@EP 的磨损率达到 5.32 × 10-5 mm3/N-m,磨损率降低了 58.29%,这主要得益于摩擦界面润滑膜的形成和涂层抗变形能力的增强。SNT与Ti3C2Tx基平台的合理搭配,消除了传统无机纳米容器与水性环氧涂层相互作用力弱的问题,充分发挥了两者的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Multifunctional Ti3C2Tx-based epoxy composite coating towards intelligent response and corrosion/wear resistance

Multifunctional Ti3C2Tx-based epoxy composite coating towards intelligent response and corrosion/wear resistance

Questions remain about the unreasonable collocation of Ti3C2Tx and nanocontainers resulting in the performance degradation of multi-function Ti3C2Tx-based epoxy composite coating. Here, mesoporous SiO2 nanocontainers (SNT) containing both potassium thiocyanate and hexadecyl trimethyl ammonium bromide (CTAB) were loaded on MXene-based platform (SNT-on-MP) to achieve a novel epoxy coating (SNT-on-MP@EP) with the integrated functions of self-warning, self-healing, anti-corrosion and anti-wear. In the damaged area, the thiocyanate groups combined with Fe3+ ions to form a blood-red color display, and the formed coordination compound and CTAB as corrosion inhibitors were deposited on the metal substrate, thus showing intelligent response function. Besides, because of passive and active synergistic protection functions, the lowest-frequency impedance value of SNT-on-MP@EP maintained 5.74 × 107 Ω·cm2 after 4 weeks of exposure in salt water environment, which was increased by two orders of magnitude compared with pure epoxy coating. Under the reciprocating sliding friction, the wear rate of SNT-on-MP@EP reached 5.32 × 10−5 mm3/N·m, and was reduced by 58.29 %, owing to the formation of lubricant film at the friction interface and the enhancement of the deformation resistance of the coating. The reasonable collocation of SNT and Ti3C2Tx-based platform eliminated the problem of weak interaction between traditional inorganic nanocontainer and water-based epoxy coating, thus giving full play to the advantages of both.

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来源期刊
Progress in Organic Coatings
Progress in Organic Coatings 工程技术-材料科学:膜
CiteScore
11.40
自引率
15.20%
发文量
577
审稿时长
48 days
期刊介绍: The aim of this international journal is to analyse and publicise the progress and current state of knowledge in the field of organic coatings and related materials. The Editors and the Editorial Board members will solicit both review and research papers from academic and industrial scientists who are actively engaged in research and development or, in the case of review papers, have extensive experience in the subject to be reviewed. Unsolicited manuscripts will be accepted if they meet the journal''s requirements. The journal publishes papers dealing with such subjects as: • Chemical, physical and technological properties of organic coatings and related materials • Problems and methods of preparation, manufacture and application of these materials • Performance, testing and analysis.
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