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Reply to Comment on 'Metallic nanowiregraphene hybrid nanostructures for highly flexible field emission devices'

机译:对“用于高度灵活的场发射器件的金属纳米线石墨烯杂化纳米结构”的评论答复

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摘要

In our previous paper (Arif etal 2011 Nanotechnology 22 355709), we developed a method to prepare metallic nanowiregraphene hybrid nanostructures and applied it to the fabrication of flexible field emission devices. For the quantitative analysis of the devices, the basic FowlerNordheim model was used. However, as pointed out by Forbes (2012 Nanotechnology 23 288001) the basic FowlerNordheim model should be corrected when the quantum confinement effect and the screening effect are considered. Forbes also developed a method that checks quantitatively the consistency between the experimental data and the theoretical assumptions. These discussions should provide an important theoretical framework in the quantitative analysis of our devices as well as large area field emitters in general.
机译:在我们之前的论文(Arif等,2011纳米技术22 355709)中,我们开发了一种制备金属纳米线石墨烯杂化纳米结构的方法,并将其应用于柔性场致发射器件的制造中。为了对设备进行定量分析,使用了基本的FowlerNordheim模型。但是,正如《福布斯》(2012纳米技术23 288001)所指出的那样,当考虑到量子约束效应和屏蔽效应时,应校正基本的FowlerNordheim模型。福布斯还开发了一种定量检查实验数据与理论假设之间一致性的方法。这些讨论将为我们的设备以及一般大面积场发射器进行定量分析提供重要的理论框架。

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