Graphene oxide composite as a novel corrosion inhibitor for N80 steel in 15 % HCl: experimental and quantum chemical examinations

Caihong Yin, Ambrish Singh, K. R. Ansari, Ismat H. Ali, B. E. Ibrahimi, Abdullah K. Alanazi, Muhammad Younas, Yuanhua Lin
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Abstract

Graphene oxide (GO) consists of many functional groups containing oxygen that helps in its chemical modifications. Thus, we have explored the synthesis, and corrosion inhibition application of n-butylamine (nBA) functionalized GO, i.e., GO-nBA for N80 steel in the acidizing environment (15 % HCl). NMR and TEM characterized the GO-nBA. The performance of GO-nBA was evaluated via chemical and electrochemicals methods that are supported by surface examination techniques. The PDP results supports the mixed nature of protection ability of GO-nBA. Additionally, the excellency of GO-nBA is confirmed by the value of 93.93 % efficiency. The surface study furthermore represents smooth texture with the addition of GO-nBA. The computational analysis reveals excellent inhibitive performance of GO-nBA.
氧化石墨烯复合材料作为 15% HCl 中 N80 钢的新型缓蚀剂:实验和量子化学检验
氧化石墨烯(GO)由许多含氧官能团组成,这些官能团有助于对其进行化学修饰。因此,我们探索了正丁胺(nBA)功能化 GO(即 GO-nBA)的合成和在酸化环境(15% HCl)中对 N80 钢的缓蚀应用。核磁共振和透射电镜对 GO-nBA 进行了表征。在表面检测技术的支持下,通过化学和电化学方法对 GO-nBA 的性能进行了评估。PDP 结果表明,GO-nBA 具有混合保护能力。此外,93.93 % 的效率值也证实了 GO-nBA 的卓越性能。表面研究进一步表明,加入 GO-nBA 后,表面纹理变得光滑。计算分析表明,GO-nBA 具有出色的抑制性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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