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真实的金属-石墨烯接触结构。

Realistic metal-graphene contact structures.

机构信息

Department of Materials Science and Engineering, The University of Texas at Dallas , Richardson, Texas 75080, United States.

出版信息

ACS Nano. 2014 Jan 28;8(1):642-9. doi: 10.1021/nn405249n. Epub 2013 Nov 26.

Abstract

The contact resistance of metal-graphene junctions has been actively explored and exhibited inconsistencies in reported values. The interpretation of these electrical data has been based exclusively on a side-contact model, that is, metal slabs sitting on a pristine graphene sheet. Using in situ X-ray photoelectron spectroscopy to study the wetting of metals on as-synthesized graphene on copper foil, we show that side-contact is sometimes a misleading picture. For instance, metals like Pd and Ti readily react with graphitic carbons, resulting in Pd- and Ti-carbides. Carbide formation is associated with C-C bond breaking in graphene, leading to an end-contact geometry between the metals and the periphery of the remaining graphene patches. This work validates the spontaneous formation of the metal-graphene end-contact during the metal deposition process as a result of the metal-graphene reaction instead of a simple carbon diffusion process.

摘要

金属-石墨烯结的接触电阻一直受到积极的探索,但报道的值存在不一致。这些电数据的解释仅基于侧接触模型,即金属薄片放置在原始石墨烯片上。通过原位 X 射线光电子能谱研究金属在铜箔上合成石墨烯的润湿情况,我们表明侧接触有时是一种误导性的描述。例如,像 Pd 和 Ti 这样的金属很容易与石墨碳反应,生成 Pd 和 Ti 碳化物。碳化物的形成与石墨烯中 C-C 键的断裂有关,导致金属与剩余石墨烯片的边缘之间形成端接触几何形状。这项工作验证了金属-石墨烯端接触的自发形成是金属-石墨烯反应的结果,而不是简单的碳扩散过程,这在金属沉积过程中发生。

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