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Low-Temperature CVD Graphene Nanostructures on Cu and Their Corrosion Properties

机译:Cu上的低温CVD石墨烯纳米结构及其腐蚀性能

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摘要

Chemical vapor deposition (CVD) graphene is reported to effectively prevent the penetration of outer factors and insulate the underneath metals, hence achieving an anticorrosion purpose. However, there is little knowledge about their characteristics and corresponding corrosion properties, especially for those prepared under different parameters at low temperatures. Using electron cyclotron resonance chemical vapor deposition (ECR-CVD), we can successfully prepare graphene nanostructures on copper (Cu) at temperatures lower than 600 °C. Scanning electron microscopy (SEM), X-ray diffraction (XRD), Raman spectroscopy, and potentiodynamic polarization measurements were used to characterize these samples. In simulated seawater, i.e., 3.5 wt.% sodium chloride (NaCl) solution, the corrosion current density of one graphene-coated Cu fabricated at 400 °C can be 1.16 × 10−5 A/cm2, which is one order of magnitude lower than that of pure Cu. Moreover, the existence of tall graphene nanowalls was found not to be beneficial to the protection as a consequence of their layered orientation. These correlations among the morphology, structure, and corrosion properties of graphene nanostructures were investigated in this study. Therefore, the enhanced corrosion resistance in selected cases suggests that the low-temperature CVD graphene under appropriate conditions would be able to protect metal substrates against corrosion.
机译:据报道,化学气相沉积(CVD)石墨烯可有效防止外部因素渗透并使下面的金属绝缘,从而达到防腐蚀的目的。但是,关于它们的特性和相应的腐蚀性能,特别是对于在低温下以不同参数制备的那些腐蚀性能,其了解很少。使用电子回旋共振化学气相沉积(ECR-CVD),我们可以在低于600°C的温度下成功地在铜(Cu)上制备石墨烯纳米结构。扫描电子显微镜(SEM),X射线衍射(XRD),拉曼光谱和电位动力学极化测量被用来表征这些样品。在模拟海水中,即3.5 wt。%的氯化钠(NaCl)溶液中,在400°C下制备的一种石墨烯包覆的Cu的腐蚀电流密度可以为1.16×10 -5 A / cm < sup> 2 ,比纯铜低一个数量级。此外,发现高石墨烯纳米壁的存在由于其分层取向而对保护没有益处。在这项研究中,研究了石墨烯纳米结构的形貌,结构和腐蚀性能之间的这些相关性。因此,在某些情况下增强的耐腐蚀性表明,在适当条件下的低温CVD石墨烯将能够保护金属基材免受腐蚀。

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