等离子体和掺杂元素对金属碳纳米管尖端生长和场发射性能的影响

Suresh C. Sharma, A. Tewari, Ravi Gupta
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引用次数: 0

摘要

碳纳米管(CNTs)由于其特殊的机械和电气性能,是目前具有广泛应用前景的材料。它们的应用已经在场发射显示器、纳米级电子器件、生物传感器和储氢介质中得到了证明。碳纳米管的场发射特性是一个重要的研究领域,因为与现有的场发射器件相比,它们提供了非常高的电流密度值。等离子体参数、取代原子、尺寸效应、阳极阴极距离等因素对碳纳米管场发射的影响也得到了广泛的研究。本讲座将讨论等离子体的产生以及杂原子掺杂对复杂等离子体圆柱形表面上碳纳米管(CNTs)尖端生长和场发射特性的影响。建立了一个包含电子、离子和中性原子等等离子体物质动力学的理论模型,包括氮(N)、硼(B)、钾(K)、铯(Cs)等掺杂元素和碳纳米管在复杂等离子体中的能量平衡。在典型辉光放电等离子体参数下,研究了N、B、K和Cs元素对CNTs生长的影响,即尖端半径。结果表明,掺杂元素对CNTs的半径有较大的影响。我们得到了掺杂N的碳纳米管半径小,而掺杂b的碳纳米管半径大。因此,根据得到的结果提出了碳纳米管的场发射特性。一些理论结果与已有的实验观测结果相吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of Plasma and Doping Elements on the Growth and Field Emission Properties of Metallic Carbon Nanotube (CNT) Tip Placed over Cylindrical Surface
Carbon nanotubes (CNTs) are currently attractive materials for a diverse range of applications because of their extra ordinary mechanical and electrical properties. Their application has already been demonstrated in field emission displays, nanoscale electronic devices, biosensors and hydrogen storage medium. The field emission properties of carbon nanotubes are an important field of study because they give very high values of current density as compared to the already existing field emission devices. The effect of various factors such as plasma parameters, substitutional atoms, dimensional effects, anode-cathode distance etc. on field emission from CNT has also been extensively studied. The present talk will cover the plasma production and effect of doping of hetero-atoms on the growth and field emission properties of Carbon Nanotubes (CNTs) tip placed over a cylindrical surface in complex plasma. A theoretical model incorporating kinetics of plasma species such as electron, ions and neutral atoms including doping elements like nitrogen (N), Boron (B), Potassium (K), Cesium (Cs) and energy balance of CNTs in complex plasma has been developed. The effect of doping elements of N, B, K, and Cs on the growth of CNTs namely the tip radius has been carried out for typical glow discharge plasma parameters. It is found that doping elements affect the radius of CNTs extensively. We obtained small radii for CNT doped with N and large radius for CNT doped with B. The field emission characteristics from CNTs have therefore been suggested on the basis of results obtained. Some of theoretical results are in compliance with the existing experimental observations.
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