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Ultra-thin graphene edges at the nanowire tips: A cascade cold cathode with two-stage field amplification

机译:纳米线尖端的超薄石墨烯边缘:具有两级场放大作用的级联冷阴极

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摘要

A multistage field emitter based on graphene-linked ZnO nanowire array is realized by means of spin-coating a graphene dispersion (reduced graphene oxide) over a nanostructured platform followed by plasma modification. Spin-coating leads to interlinking of graphene sheets between the neighboring nanowires whereas plasma etching in the subsequent step generates numerous ultra-sharp graphene edges at the nanowire tips. The inherent tendency of graphene to lay flat over a plane substrate can easily be bypassed through the currently presented nanostructure platform based technique. The turn-on and threshold field significantly downshifted compared to the individual components in the cascade emitter. Through the facile electron transfer from nanowires to graphene due to band bending at the ZnO-graphene interface together with multistage geometrical field enhancement at both the nanowire and graphene edges remain behind this enriched field emission from the composite cold cathode. This strategy will open up a new direction to integrate the functionalities of both the graphene array and several other inorganic nanostructure array for practical electronic devices.
机译:通过在纳米结构平台上旋涂石墨烯分散体(还原的氧化石墨烯),然后进行等离子体改性,可以实现基于石墨烯连接的ZnO纳米线阵列的多级场致发射体。旋涂导致相邻纳米线之间的石墨烯片相互连接,而后续步骤中的等离子蚀刻在纳米线尖端产生了许多超锐利的石墨烯边缘。通过当前提出的基于纳米结构平台的技术,可以轻松地绕过石墨烯平放在平面基板上的固有趋势。与级联发射器中的各个组件相比,导通和阈值场显着下移。由于ZnO-石墨烯界面处的能带弯曲,通过从纳米线到石墨烯的便捷电子转移,以及纳米线和石墨烯边缘的多级几何场增强,始终保持在复合冷阴极的富集场发射之后。该策略将为整合石墨烯阵列和其他几种无机纳米结构阵列的功能,为实用电子设备开辟新的方向。

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