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Long-Term Corrosion Protection of a Cupro-Nickel Alloy Due to Graphene Coating

机译:石墨烯涂层对铜镍合金的长期腐蚀防护

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This study demonstrates the corrosion resistance of a Cu-Ni alloy coated with a multi-layer graphene. This is one of the first demonstrations of long-term corrosion resistance due to graphene coating, which is crucial since earlier studies have suggested graphene-coated copper to be considerably inferior to bare copper in terms of corrosion during long-term exposure to a corrosive environment. The inferior corrosion resistance of graphene-coated copper arises due to defects and poor surface coverage by graphene. Since it is prohibitively difficult to develop defect-free graphene on metals at a commercially feasible scale, this study investigated the hypothesis for an alternative approach, i.e., to develop multi-layer graphene with a reasonable assumption that the areas of defects/poor coverage of a layer will be masked by the subsequent over-layer(s). This study has validated this hypothesis. Electrochemical investigations have demonstrated multi-layer graphene to improve the corrosion resistance of a Cu-Ni alloy by an order of magnitude. However, the most striking finding of this study is that the improvement in corrosion resistance due to the multi-layer graphene coating sustained the entire duration of a long-term test (~350 h).
机译:这项研究证明了涂有多层石墨烯的Cu-Ni合金的耐腐蚀性。这是石墨烯涂层带来的长期耐腐蚀性的首批证明之一,这一点至关重要,因为较早的研究表明,石墨烯涂层的铜在长期暴露于腐蚀性环境下的腐蚀性能远远低于裸铜。由于缺陷和石墨烯的不良表面覆盖,导致石墨烯涂层的铜的耐腐蚀性较差。由于以商业上可行的规模在金属上开发无缺陷的石墨烯非常困难,因此,本研究调查了另一种方法的假设,即在合理假设下开发多层石墨烯时,缺陷/覆盖率低的区域。一层将被后续的一层或多层覆盖。这项研究证实了这一假设。电化学研究表明,多层石墨烯可将Cu-Ni合金的耐腐蚀性提高一个数量级。然而,这项研究最令人惊讶的发现是由于多层石墨烯涂层带来的耐腐蚀性的提高在长期测试(〜350小时)的整个过程中得以维持。

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