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Multiple value storage based on a nano-electronic–mechanical mechanism using graphene flakes

机译:基于纳米电子 - 机械机制使用石墨烯片的多重价值存储

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We report here a nano-electronic–mechanical storage mechanism with graphene flakes (GFs) revealed by in situ transmission electron microscopy observations accompanied by nano-manipulation and probing of electrical properties. Repeatable two- and three- level state storage was demonstrated using two GFs nanoelectrodes with evident hysteresis properties. The detailed mechanisms, including the formation and rupture of the GFs contact as well as the corresponding electrical properties of the hysteresis, were visualized directly. Due to the high mechanical stability and outstanding electrical conductivity of the graphene, the hysteresis property is quite stable, which allows multi-value storage in this system. This work provides a route to achieve multiple value storage based on the nano-electronic–mechanical storage mechanism.
机译:我们在此报告一种具有石墨烯片(GFS)的纳米电子机械储存机构,其原位透射电子显微镜观察伴随着纳米操纵和电气性能探测。使用具有明显滞后性能的两个GFS纳米电极来证明可重复的两级和三级状态存储。直接可视化GFS接触的形成和破裂的详细机制以及滞后的相应电学性质。由于石墨烯的机械稳定性高,导电性优异,滞后性是非常稳定的,这允许该系统中的多价值存储。这项工作提供了一种基于纳米电子 - 机械存储机制实现多重价值存储的路径。

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