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Generation and evaluation of graphene depends on the electron irradiation applied to the fullerene

机译:石墨烯的生成和评估取决于应用于富勒烯的电子辐射

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Graphene is an ideal two-dimensional material was chained to the planar six-member rings of carbon atoms. Electron of graphene behave as Dirac Fermion, this electron is unaffected to impurity scattering. Mobility of graphene with such characteristics is larger than mobility of silicon. But, mass production of graphene technology has not been established. As a new method, we have suggested a method using C_(61)-fullerene and electron beam irradiation. This study is one of many studies for new mass production and exactly patterning of graphene on substrate, this goal is to establish a method that change fullerene to graphene. To create variety of graphene samples by spin coat, anneal, electron irradiation on the silicon-oxide (by change of the dose and annealing temperature), electrical characteristics of graphene are revealed by IV-measurement. As a result, we have confirmed changing fullerene that should be insulator to conductor material.
机译:石墨烯是一种理想的二维材料,被链接到平面六元碳原子环上。石墨烯的电子表现为狄拉克费米子,该电子不影响杂质散射。具有这种特性的石墨烯的迁移率大于硅的迁移率。但是,尚未建立石墨烯技术的批量生产。作为一种新方法,我们提出了一种使用C_(61)-富勒烯和电子束辐照的方法。这项研究是新的大规模生产和在衬底上石墨烯精确图案化的众多研究之一,目的是建立一种将富勒烯转变为石墨烯的方法。为了通过旋涂,退火,在氧化硅上进行电子辐照(通过改变剂量和退火温度)来创建各种石墨烯样品,通过IV测量揭示了石墨烯的电特性。结果,我们确认了将富勒烯改变为导体材料的绝缘体。

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