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Real-time oxide evolution of copper protected by graphene and boron nitride barriers

机译:石墨烯和氮化硼阻挡层保护的铜的实时氧化物演化

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摘要

Applying protective or barrier layers to isolate a target item from the environment is a common approach to prevent or delay its degradation. The impermeability of two-dimensional materials such as graphene and hexagonal boron nitride (hBN) has generated a great deal of interest in corrosion and material science. Owing to their different electronic properties (graphene is a semimetal, whereas hBN is a wide-bandgap insulator), their protection behaviour is distinctly different. Here we investigate the performance of graphene and hBN as barrier coatings applied on copper substrates through a real-time study in two different oxidative conditions. Our findings show that the evolution of the copper oxidation is remarkably different for the two coating materials.
机译:施加保护层或阻隔层以将目标物品与环境隔离是防止或延迟其降解的常用方法。二维材料(例如石墨烯和六方氮化硼(hBN))的不渗透性引起了腐蚀和材料科学的极大兴趣。由于它们的电子特性不同(石墨烯是半金属,而hBN是宽带隙绝缘体),它们的保护行为也明显不同。在这里,我们通过在两种不同氧化条件下的实时研究,研究了石墨烯和hBN作为在铜基板上涂覆的阻隔涂层的性能。我们的发现表明,两种涂层材料的铜氧化演变显着不同。

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