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Enhancement of seawater corrosion resistance in copper using acetone-derived graphene coating

机译:增强的耐海水腐蚀使用acetone-derived铜石墨烯涂层

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摘要

We show that acetone-derived graphene coating can effectively enhance the corrosion efficiency of copper (Cu) in a seawater environment (0.5-0.6 M (~3.0-3.5%) sodium chloride). By applying a drop of acetone (~20 nl cm~(-2)) on Cu surfaces, rapid thermal annealing allows the facile and rapid synthesis of graphene films on Cu surfaces with a monolayer coverage of almost close to ~100%. Under optimal growth conditions, acetone-derived graphene is found to have a relatively high crystallinity, comparable to common graphene grown by chemical vapor deposition. The resulting graphene-coated Cu surface exhibits 37.5 times higher corrosion resistance as compared to that of mechanically polished Cu. Further, investigation on the role of graphene coating on Cu surfaces suggests that the outstanding corrosion inhibition efficiency (IE) of 97.4% is obtained by protecting the underlying Cu against the penetration of both dissolved oxygen and chlorine ions, thanks to the closely spaced atomic structure of the graphene sheets. The increase of graphene coating thickness results in the enhancement of the overall corrosion IE up to ~99%, which can be attributed to the effective blocking of the ionic diffusion process via grain boundaries. Overall, our results suggest that the acetone-derived graphene film can effectively serve as a corrosion-inhibiting coating in the seawater level and that it may have a promising role to play for potential offshore coating.
机译:我们表明,acetone-derived石墨烯涂层有效地提高腐蚀的效率铜(铜)在海水环境中(0.5 - -0.6米(3.0 ~ -3.5%)氯化钠)。丙酮(~ 20问厘米~(2))在铜表面,快速热退火允许简单和快速在铜表面合成石墨烯的电影单层的报道几乎接近~ 100%。在最佳生长条件下,acetone-derived石墨烯被发现有一个相对较高结晶度,类似于常见的石墨烯增加了化学气相沉积。graphene-coated铜表面展示的37.5倍高耐蚀性比机械抛光铜。研究石墨烯涂层的作用铜表面表明突出腐蚀抑制效率(IE)的97.4%通过保护底层铜溶解氧和渗透氯离子,由于密集石墨烯的原子结构表。石墨烯涂层厚度的增加导致增强整体腐蚀的IE~ 99%,这可以归因于有效通过谷物阻塞离子的扩散过程边界。acetone-derived石墨烯薄膜能有效作为一个防蚀涂料海水的水平,它可能有一个承诺作用的潜在海外涂层。

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