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Observing Graphene Grow: Catalyst–GrapheneInteractions during Scalable Graphene Growth on Polycrystalline Copper

机译:观察石墨烯的生长:催化剂–石墨烯多晶铜上可缩放石墨烯生长期间的相互作用

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摘要

Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmental scanning electron microscopy are used to fingerprint the entire graphene chemical vapor deposition process on technologically important polycrystalline Cu catalysts to address the current lack of understanding of the underlying fundamental growth mechanisms and catalyst interactions. Graphene forms directly on metallic Cu during the high-temperature hydrocarbon exposure, whereby an upshift in the binding energies of the corresponding C1s XPS core level signatures is indicative of coupling between the Cu catalyst and the growing graphene. Minor carbon uptake into Cu can under certain conditions manifest itself as carbon precipitation upon cooling. Postgrowth, ambient air exposure even at room temperature decouples the graphene from Cu by (reversible) oxygen intercalation. The importance of these dynamic interactions is discussed for graphene growth, processing, and device integration.
机译:互补的原位X射线光电子能谱(XPS),X射线衍射法和环境扫描电子显微镜被用于对技术上重要的多晶Cu催化剂上的整个石墨烯化学气相沉积过程进行指纹识别,以解决目前对底层基本原理缺乏理解的情况。生长机理和催化剂相互作用。石墨烯在高温碳氢化合物暴露期间直接在金属Cu上形成,因此相应的C1s XPS核心能级特征的结合能的上移表明Cu催化剂与生长的石墨烯之间存在偶联。在一定条件下,少量的铜吸收会表现为冷却时的碳沉淀。生长后,即使在室温下也暴露于环境空气中,通过(可逆的)氧嵌入使石墨烯与Cu分离。讨论了这些动态相互作用对于石墨烯生长,加工和器件集成的重要性。

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