基于同轴电纺丝技术开发具有三明治状微血管网络的防腐蚀涂层,以实现自愈合和自报告特性

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

摘要

通过同轴电纺丝技术制备的仿生微血管网络作为一种封装活性物质的新型载体,已经引起了广泛关注。然而,传统电纺材料与金属基底之间的界面结合强度较差,限制了其在防腐涂层中的应用。本文合成了一种新型的聚乙烯醇接枝植酸(PVA-PA)电纺丝溶液。以 PVA-PA 溶液为外壳材料,环氧树脂 51(E51)、四苯基乙烯(TPE)和聚酰胺树脂为芯材,采用同轴电纺丝技术制备了三明治状微血管网络(SMN)。由于 SMN 的孔隙率高,环氧树脂可直接旋涂在其上形成复合涂层(PVA-PA/SMN/EP)。实验证明,由于 PA 与低碳钢之间具有很强的螯合和配位作用,PVA-PA/SMN/EP 复合涂层在低碳钢上的拔出附着力提高了 0.92 兆帕。此外,通过系统优化同轴电纺中芯液和壳液两个喷嘴之间的相对粘度、混溶性、电导率和饱和蒸汽压,改善了同轴电纺纳米纤维的微血管结构,保持了内部活性物质的流动性。当 PVA-PA/SMN/EP 复合涂层产生微裂缝时,包裹在 SMN 中的活性物质流出,其中 E51 和聚酰胺树脂固化形成的三维交联网络增强了 TPE 分子间的空间相互作用,从而使 TPE 发出明亮的蓝色荧光。这项工作为开发新一代智能防腐涂料提供了一种新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Development of anti-corrosion coating with sandwich-like microvascular network for realization of self-healing and self-reporting properties based on coaxial electrospinning

Development of anti-corrosion coating with sandwich-like microvascular network for realization of self-healing and self-reporting properties based on coaxial electrospinning

Biomimetic microvascular networks prepared by coaxial electrospinning technology have attracted much attention as a novel form of carrier for encapsulating active substances. However, the poor interfacial bonding strength between traditional electrospinning materials and metal substrates limits its application in anti-corrosion coatings. Herein, a novel poly(vinyl alcohol) grafted phytic acid (PVA-PA) electrospinning solution was synthesized. And a sandwich-like microvascular network (SMN) was prepared by coaxial electrospinning technology, which used PVA-PA solution as the shell material, epoxy resin 51 (E51), tetraphenylethylene (TPE) and polyamide resin as the core materials, respectively. Owing to the high porosity of SMN, epoxy resin can be directly spin-coated on it to form a composite coating (PVA-PA/SMN/EP). It is proved that due to the strong chelation and coordination interaction between PA and mild steel, the pull-out adhesion of the PVA-PA/SMN/EP composite coatings on mild steel was increased by 0.92 MPa. In addition, by systematically optimizing the relative viscosity, miscibility, conductivity, and saturated vapor pressure between the two jets of the core solution and the shell solution in coaxial electrospinning, the microvascular structure of the coaxial electrospinning nanofibers was improved and the fluidity of the internal active substances was maintained. When the PVA-PA/SMN/EP composite coating generates microcracks, the active substances encapsulated in the SMN flow out, in which the three-dimensional crosslinked network formed by the curing of E51 and polyamide resin enhances the spatial interactions between TPE molecules, which results in TPE emitting a bright blue fluorescence. This work provides a new approach for the development of the next generation of smart anti-corrosion coatings.

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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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