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首页> 外文期刊>Nanoscience and Nanotechnology Letters >Field Enhancement of Full-3D Carbon Nanotube Arrays Evaluated in an Axisymmetric 2D Model
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Field Enhancement of Full-3D Carbon Nanotube Arrays Evaluated in an Axisymmetric 2D Model

机译:在轴对称二维模型中评估全3D碳纳米管阵列的场增强

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摘要

In field emission studies of parallel-oriented carbon nanotube (CNT) arrays, there is the necessity to model experimental data using simulations in a large variety of cases, of which only a small number are covered in the literature. Arrays of CNTs are, fundamentally 3D systems, but simulation in full 3D-geometry is time and memory consuming and is also less accurate than simulating in 2D-geometry. Here we show an alternative that overcomes these hurdles. We describe the field enhancement factor (β) of CNTs in a 2D-rotationally-symmetric coordinate system and compare the results with square and hexagonal 3D arrays. We find that the deviation between the 2D rotational model and the 3D-models is at most 25%. Moreover, values of β calculated in the 2D-geometry can be corrected with a factor that is a function of the aspect ratio and spacing in the array. We apply the axis symmetric model to open tip CNT arrays, which are notoriously difficult to simulate in 3D.
机译:在平行取向碳纳米管(CNT)阵列的场发射研究中,有必要在多种情况下使用模拟对实验数据进行建模,而文献中只涉及了少数情况。 CNT数组从根本上讲是3D系统,但是在完整3D几何形状中进行仿真既耗时又耗费内存,并且比在2D几何形状中进行仿真的准确性也较低。在这里,我们展示了克服这些障碍的替代方案。我们在2D旋转对称坐标系中描述了CNT的场增强因子(β),并将结果与​​正方形和六边形3D阵列进行了比较。我们发现2D旋转模型和3D模型之间的偏差最多为25%。而且,可以利用作为纵横比和阵列中的间隔的函数的因子来校正在2D几何中计算出的β的值。我们将轴对称模型应用于开放式尖端CNT阵列,这在3D中很难模拟。

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