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Corrosion Protection of Monel Alloy Coated with Graphene Quantum Dots Starts with a Surge

机译:涂有石墨烯量子点的Monel合金的腐蚀保护从浪涌开始

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摘要

There has been an active interest in protecting metals and alloys using graphene coating. The mechanism by which corrosion protection occurs has not been well understood as the couple involved are both good electron conductors. In this work, we demonstrate that Monel alloy coated with graphene quantum dots (GQD) changes the corrosion rate with a surge (increase) caused by the galvanic coupling of the two materials. This surge results in the protective layer formation on Monel to inhibit the corrosion. X-ray fluorescence spectrum of Monel (400) alloy showed the composition of it as Ni (67.05%) and Cu (29.42%). The Tafel experiments carried out in NaCl and Na2SO4 electrolytes showed an initial enhancement of the corrosion rate followed by a decrease upon successive polarizations. Monel coated with graphene oxide (an insulator) shows no initial enhancement of corrosion rate; the coated samples showed a lower corrosion rate in comparison to the uncoated samples. X-ray fluorescence, Fourier Transform spectroscopy (FTIR) and Raman imaging studies have been carried out for understanding this transformation. Distinct peaks due to Ni-O stretching and Ni-O-H bending vibration were observed in the FTIR spectrum.
机译:使用石墨烯涂层保护金属和合金存在积极兴趣。由于涉及的夫妻是良好的电子导体,因此腐蚀保护发生的机制尚未得到很好的理解。在这项工作中,我们证明涂有石墨烯量子点(GQD)的寄生合金改变了由两种材料的电流耦合引起的浪涌(增加)的腐蚀速率。这种浪涌导致在监管抑制腐蚀上的保护层形成。 Monel(400)合金的X射线荧光光谱显示其作为Ni(67.05%)和Cu(29.42%)的组成。在NaCl和Na 2 SO 4电解质中进行的Tafel实验表明腐​​蚀速率的初始增强,然后在连续偏振时降低。涂有石墨烯氧化物(绝缘体)的盗用术显示腐蚀速率的初步增强;与未涂覆的样品相比,涂覆的样品显示出较低的腐蚀速率。 X射线荧光,傅里叶变换光谱(FTIR)和拉曼成像研究已经进行了解这种转变。在FTIR光谱中观察到由于Ni-O拉伸和Ni-O-H弯曲振动引起的明显峰。

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