Braeuninger-Weimer Philipp, Burton Oliver J, Zeller Patrick, Amati Matteo, Gregoratti Luca, Weatherup Robert S, Hofmann Stephan
Department of Engineering, University of Cambridge, Cambridge CB3 0FA, United Kingdom.
Elettra-Sincrotrone Trieste S.C.p.A., AREA Science Park, S.S. 14 km 163.5, 34149 Trieste, Italy.
Chem Mater. 2020 Sep 22;32(18):7766-7776. doi: 10.1021/acs.chemmater.0c02296. Epub 2020 Aug 27.
We combine spatially resolved scanning photoelectron spectroscopy with confocal Raman and optical microscopy to reveal how the oxidation of the buried graphene-Cu interface relates to the Cu crystallographic orientation. We analyze over 100 different graphene covered Cu (high and low index) orientations exposed to air for 2 years. Four general oxidation modes are observed that can be mapped as regions onto the polar plot of Cu surface orientations. These modes are (1) complete, (2) irregular, (3) inhibited, and (4) enhanced wrinkle interface oxidation. We present a comprehensive characterization of these modes, consider the underlying mechanisms, compare air and water mediated oxidation, and discuss this in the context of the diverse prior literature in this area. This understanding incorporates effects from across the wide parameter space of 2D material interface engineering, relevant to key challenges in their emerging applications, ranging from scalable transfer to electronic contacts, encapsulation, and corrosion protection.
我们将空间分辨扫描光电子能谱与共焦拉曼光谱和光学显微镜相结合,以揭示埋藏的石墨烯 - 铜界面的氧化与铜晶体取向之间的关系。我们分析了100多种不同的石墨烯覆盖的铜(高指数和低指数)取向,这些取向在空气中暴露了2年。观察到四种一般氧化模式,这些模式可以映射到铜表面取向的极坐标图上的区域。这些模式是:(1)完全氧化,(2)不规则氧化,(3)抑制氧化,以及(4)增强的褶皱界面氧化。我们对这些模式进行了全面表征,考虑了潜在机制,比较了空气和水介导的氧化,并结合该领域不同的现有文献进行了讨论。这种理解涵盖了二维材料界面工程广泛参数空间中的各种效应,这些效应与它们新兴应用中的关键挑战相关,从可扩展转移到电子接触、封装和腐蚀防护。