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Fabrication and characterization of graphene oxide-chitosan-zinc oxide ternary nano-hybrids for the corrosion inhibition of mild steel

机译:石墨烯氧化丁烷 - 氧化锌三氧化锌氧化锌腐蚀抑制作用的制备及表征

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In this study, graphene oxide-chitosan (GO-CS) and graphene oxide-chitosan-ZnO (GO-CS-ZnO) hybrids were synthesized in order to examine the effectiveness of hybridization in enhancing the corrosion inhibition activity of graphene oxide (GO). In this way, the synthesized GO and nano-hybrids were firstly characterized by using FTIR, UV-Vis, FE-SEM, AFM, TEM and subsequently were studied in term of corrosion inhibition. Our primary results indicated that, single-layer GO, GO-CS hybrids and also GO-CS-ZnO ternary nano-hybrids were appropriately synthesized. The corrosion inhibition results demonstrated superior performance of GO-CS hybrids than pure GO. In addition, GO-CS-ZnO ternary nano-hybrids revealed the highest corrosion inhibition activity compared with all nano-materials studied here. The corrosion inhibition efficiency of GO (eta = 42.35%) was enhanced to 83.81% and 85.61% for GO-CS and GO-CS-ZnO nanocomposites in 500 ppm conc., respectively. Generally, our results demonstrated that hybridization strategy successfully promoted the corrosion inhibition efficiency of GO. Furthermore, Langmuir isotherm was used in three methods (PDP, EIS and LPR) to study the adsorption of synthesized nano-materials on mild steel. (C) 2019 Elsevier B.V. All rights reserved.
机译:在该研究中,合成了石墨烯氧化壳 - 壳聚糖(GO-CS)和石墨烯氧化壳蛋白-ZNO(GO-CS-ZnO)杂种,以检查杂交在提高氧化石墨烯(GO)的腐蚀抑制活性方面的有效性。以这种方式,首先使用FTIR,UV-Vis,Fe-SEM,AFM,TEM和随后在腐蚀抑制期间进行的合成GO和纳米杂种。我们的主要结果表明,单层GO,GO-CS杂交种和GO-CS-ZnO三元纳米杂交体被适当地合成。腐蚀抑制结果表明了比纯粹的Go-Cs杂种的优异性能。此外,与这里研究的所有纳米材料相比,Go-CS-ZnO三元纳米杂交体揭示了最高的腐蚀抑制活性。 GO(ETA = 42.35%)的腐蚀抑制效率增强至500ppm浓度的GO-CS和GO-CS-ZnO纳米复合材料的83.81%和85.61%。一般来说,我们的结果表明,杂交策略成功促进了去的腐蚀抑制效率。此外,Langmuir等温线用于三种方法(PDP,EIS和LPR),以研究在低碳钢上的合成纳米材料的吸附。 (c)2019 Elsevier B.v.保留所有权利。

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