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Electrosprayed PLGA smart containers for active anti-corrosion coating on magnesium alloy Amlite

机译:电喷雾PLGA智能容器,用于镁合金Amlite上的主动防腐涂层

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摘要

A novel self-healing system, consisting of poly(lactic-co-glycolic) acid (PLGA) porous particles loaded with a corrosion inhibitor, i.e. benzotriazole (BTA), has been successfully achieved via direct electro-spray deposition and subsequent epoxy spraying upon magnesium (Mg) alloy AMlite. The two-step process greatly simplified the multi-step fabrication of smart coatings reported previously. The PLGA particles demonstrate rapid response to both water and pH increase incurred by corrosion of Mg, ensuring instant and ongoing release of BTA to self-heal the protective functionality and retard further corrosion. Furthermore, nanopores in the PLGA–BTA microparticles, formed by the fast evaporation of dichloromethane during the electrospray process, also contribute to the fast release of BTA. Using Mg alloy AMlite as a model substrate which requires corrosion protection, potentiodynamic polarisation characterisation and scratch testing were adopted to reveal the anti-corrosion capability of the active coating.
机译:通过直接电喷雾沉积和随后的环氧喷涂,已经成功实现了一种新型的自修复系统,该系统由负载了缓蚀剂即苯并三唑(BTA)的聚乳酸-乙醇酸(PLGA)多孔颗粒组成。镁(Mg)合金AMlite。两步过程极大地简化了先前报道的智能涂层的多步制造。 PLGA颗粒表现出对因Mg腐蚀而引起的水和pH值升高的快速响应,可确保BTA立即释放并持续释放,以自愈保护功能并阻止进一步的腐蚀。此外,PLGA-BTA微粒中的纳米孔是由电喷雾过程中二氯甲烷的快速蒸发形成的,也有助于BTA的快速释放。以镁合金AMlite为模型基体,该基体需要腐蚀防护,通过电位动力学极化特性和划痕测试来揭示活性涂层的抗腐蚀能力。

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