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Preparation of pH responsive smart nanocontainer via inclusion of inhibitor in graphene/halloysite nanotubes and its application in intelligent anticorrosion protection

机译:通过在石墨烯/硅藻土纳米管中加入抑制剂制备pH响应型智能纳米容器及其在智能防腐中的应用

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Graphene exhibits great potential as a functional building block in modern protective material aiming to high anti-corrosion performance. Herein, we demonstrate a concept for graphene based integrated intelligent inhibitor nanocontainer (IIIN), which can provide multifunctional anti-corrosion protection when be applied as a modifier in waterborne coating. The synthesis of IIIN was started from the nanocomposite of halloysite nanotubes (HNTs) and reduced graphene oxide (rGO). Then, L-histidine (L-His) was loaded on HNTs-rGO for the formation of ternary nanocomposite via electrostatic adsorption. IIIN has the excellent compatibility with waterborne coatings. Importantly, L-His@HNTs-rGO can provide an integrated anticorrosion function: in addition to the role of "passive protection" of rGO, IIIN not only extends the diffusion distances of the corrosive molecules, interrupts the possible formation of conducive pathways, but also serves an intelligent container to release L-His. The comprehensive result is the effective prolongation on the protection life of the coating from 7, 67 and 22 days of the unmodified waterborne coating, to 42, 116, and 69 days of the IIIN modified coating in H2SO4, NaOH, NaCl solution respectively. The electrochemical impedance spectroscopy (EIS) has been applied to monitor the corrosion process for different coatings, which confirms the synergism effect of IIIN.
机译:石墨烯作为高防护性能的现代防护材料,具有作为功能性基石的巨大潜力。在这里,我们演示了基于石墨烯的集成智能抑制剂纳米容器(IIIN)的概念,当在水性涂料中用作改性剂时,它可以提供多功能的防腐保护。 IIIN的合成从埃洛石纳米管(HNT)和还原型氧化石墨烯(rGO)的纳米复合材料开始。然后,将L-组氨酸(L-His)加载到HNTs-rGO上,通过静电吸附形成三元纳米复合材料。 IIIN与水性涂料具有出色的相容性。重要的是,L-His @ HNTs-rGO可以提供集成的防腐蚀功能:除了rGO的“被动保护”作用外,IIIN不仅延长了腐蚀分子的扩散距离,中断了可能形成的传导途径,而且还可以用作释放L-His的智能容器。综合结果是,在H2SO4,NaOH,NaCl溶液中,该涂层的保护寿命有效地从未改性的水性涂层的7、67和22天分别延长到IIIN改性的涂层的42、116和69天。电化学阻抗谱(EIS)已用于监测不同涂层的腐蚀过程,这证实了IIIN的协同作用。

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