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How do the electron beam writing and metal deposition affect the properties of graphene during device fabrication?

机译:电子束写作和金属怎么样沉积影响石墨烯的性质在设备制造?

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摘要

Electron beam exposure and metallic contact formation are commonly used processes for fabrication of graphene-based devices. We report a detailed Raman study on the influence of medium energy electron irradiation and metal atoms on defectivity and doping on monolayer and bilayer graphene. It is found that the electron beam could induce disorder into graphene layers mainly by three ways: knocking-off carbon atoms, reaction with substrate and deposition of amorphous carbon. We observe that bilayer graphene exhibits higher stability under e-beam irradiation than monolayer graphene. Our study on the formation process of metallic contacts reveals that evaporation of Ti normally cannot induce any defects into graphene while deposition of Au can introduce a large amount of damage. This work could be valuable for further development of processes in the fabrication of graphene-based devices.
机译:电子束曝光和金属接触形成过程中是非常常见的石墨烯器件的制造。详细研究拉曼介质的影响能源电子辐照和金属原子defectivity掺杂在单层和双层石墨烯。可能诱发疾病到石墨烯层主要吗通过三种方式:削弱碳原子,反应底物和沉积无定形碳。在电子束下石墨烯表现出更高的稳定辐照比单层石墨烯。金属接触的形成过程表明,蒸发的Ti通常不能产生任何缺陷而沉积到石墨烯盟会引入大量的伤害。这对进一步的工作可能是有价值的的制造过程的发展石墨烯器件。

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