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沉积在锌基底上的含改性氧化石墨烯的环氧涂层的防腐性能与光催化行为之间的相关性。

Correlations between the anti-corrosion properties and the photocatalytic behavior of epoxy coatings incorporating modified graphene oxide deposited on a zinc substrate.

作者信息

Ovari Tamara-Rita, Trufán Boglárka, Katona Gabriel, Szabó Gabriella, Muresan Liana Maria

机构信息

Department of Chemical Engineering Romania.

Department of Chemistry and Chemical Engineering, Hungarian Line, Babes-Bolyai University, Faculty of Chemistry and Chemical Engineering 11, Arany J. St 400028 Cluj-Napoca Romania

出版信息

RSC Adv. 2024 Apr 3;14(16):10826-10841. doi: 10.1039/d4ra00413b.

Abstract

This research aimed to create a substrate-coating system based on zinc and an epoxy resin incorporating modified graphene oxide, which possesses two key characteristics: effective resistance against corrosion and the ability to harness photocatalytic properties. Furthermore, correlations between the anti-corrosion properties and the photocatalytic behaviour of the coatings were made. Thin epoxy (EP) layers embedding 0.1 wt% graphene oxide (GO), reduced graphene oxide (rGO), and modified graphene oxide with (3-aminopropyl)-triethoxysilane (APTES) or poly(amidoamine) (PAMAM) dendrimer were applied on a zinc (Zn) substrate using the dip-coating method. Anti-corrosion properties of coated Zn samples were investigated through electrochemical impedance spectroscopy (EIS) measurements. They showed that the corrosion protection effect is more prominent for EP containing functionalized GO, the highest in the case of GO-PAMAM. The results of the EIS measurements indicated also that the corrosion protection provided by EP-rGO is smaller than that of EP. The photocatalytic properties of the coatings were studied by exposure of the samples to Methylene Blue (MB) solution followed by monitoring the model dye degradation through UV-Vis measurements. To determine the changes in the anti-corrosion properties due to photocatalysis, the coated Zn samples were put through additional EIS measurements. The same coatings applied to a glass substrate lacked photocatalytic properties, indicating that the Zn substrate is accountable for the degradation of MB. Furthermore, the incorporation of GO or functionalized GO into the coating amplifies this effect. From EIS spectra, it was determined that the protective properties loss observed after 3 days is due to coating delamination during exposure to MB solution, the EP-GO-APTES retaining the best adhesion of the coating, 98% remaining on Zn after a cross-hatch test. The corrosion measurements were complemented by examining the morphology and structure of the coatings and the modified GO particles. All things considered, the Zn/EP-GO-APTES system shows the best ability to break down organic pollutants, keeping a good anti-corrosive property and adhesion.

摘要

本研究旨在创建一种基于锌和含有改性氧化石墨烯的环氧树脂的基底涂层系统,该系统具有两个关键特性:有效的抗腐蚀能力和利用光催化性能的能力。此外,还建立了涂层的抗腐蚀性能与光催化行为之间的相关性。采用浸涂法将嵌入0.1 wt%氧化石墨烯(GO)、还原氧化石墨烯(rGO)以及用(3-氨丙基)-三乙氧基硅烷(APTES)或聚(酰胺胺)(PAMAM)树枝状大分子改性的氧化石墨烯的薄环氧(EP)层涂覆在锌(Zn)基底上。通过电化学阻抗谱(EIS)测量研究了涂覆锌样品的抗腐蚀性能。结果表明,对于含有功能化GO的EP,其防腐效果更为显著,在GO-PAMAM的情况下效果最佳。EIS测量结果还表明,EP-rGO提供的防腐保护小于EP。通过将样品暴露于亚甲基蓝(MB)溶液中,然后通过紫外-可见测量监测模型染料的降解来研究涂层的光催化性能。为了确定光催化作用导致的抗腐蚀性能变化,对涂覆锌样品进行了额外的EIS测量。应用于玻璃基底的相同涂层缺乏光催化性能,这表明锌基底是MB降解的原因。此外,将GO或功能化GO掺入涂层中会放大这种效果。从EIS光谱可知,3天后观察到的保护性能损失是由于暴露于MB溶液期间涂层分层所致,EP-GO-APTES保持了涂层的最佳附着力,在划格试验后98%仍保留在锌上。通过检查涂层和改性GO颗粒的形态和结构对腐蚀测量进行了补充。综合考虑,Zn/EP-GO-APTES系统显示出分解有机污染物的最佳能力,同时保持良好的抗腐蚀性能和附着力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa7e/10989242/6b5202a5a4d1/d4ra00413b-f1.jpg

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