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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >A few-layer graphene ring-cathode field emitter for focused electron/ion beam applications
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A few-layer graphene ring-cathode field emitter for focused electron/ion beam applications

机译:用于聚焦电子/离子束应用的几层石墨烯环阴极场致发射器

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摘要

For focused electron beam applications, the combination of high spatial resolution with high beam current is frequently required and a ring-cathode source is one novel way of achieving this. In this study, initial experimental results from a Graphene Ring-Cathode (GRC) field emitter are reported, the first of its kind, which consists of a graphene tube grown in-situ on a sharp nickel wire tip. The diameter of the GRC emitter is around 5 mu m while the edge of the ring is approximately 2.7 nm in thickness. A high emission current of similar to 30 mu A was obtained at a relatively low applied field of similar to 1.75 Vim, corresponding to an overall current density of similar to 7 x 10(4) A/cm(2). This emission current is three orders of magnitude better than that reported on LaB6 nanowire cold field emitter nanowires and a few times better than previous studies on isolated single tip CNT emitters. Also the graphene ring emitter can be precisely aligned to the axis of the beam focusing column unlike free-standing tubular graphene, eliminating errors due to misalignment with the focusing-column. The GRC field emitter is in the category of ring sources predicted to produce a high brightness-high resolution electron beam. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对于聚焦电子束应用,经常需要将高空间分辨率与高束电流相结合,而环形阴极源是实现这一目标的一种新颖方法。在这项研究中,报道了石墨烯环形阴极(GRC)场致发射器的初步实验结果,这是同类产品中的第一个,它由在尖锐的镍丝尖端上就地生长的石墨烯管组成。 GRC发射器的直径约为5微米,而环的边缘的厚度约为2.7 nm。在相对较低的施加电场(类似于1.75 Vim)下获得了类似于30μA的高发射电流,相当于总电流密度类似于7 x 10(4)A / cm(2)。该发射电流比LaB6纳米线冷场发射器纳米线上报告的发射电流好三个数量级,比以前对隔离式单尖端CNT发射器的研究要好几倍。另外,与独立式管状石墨烯不同,石墨烯环发射器可以精确地对准束聚焦柱的轴线,从而消除了由于与聚焦柱未对准而引起的误差。 GRC场发射器属于可产生高亮度-高分辨率电子束的环形源。 (C)2016 Elsevier Ltd.保留所有权利。

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