首页> 外文会议>EMRS symposium F: nanocomposite materials;EMRS fall meeting; 200809;200809; Warsaw(PL);Warsaw(PL) >Suppressed Field Emission Screening Effect and Electric Field Simulation of Carbon Nanotube-Based Triode Field Emitters
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Suppressed Field Emission Screening Effect and Electric Field Simulation of Carbon Nanotube-Based Triode Field Emitters

机译:碳纳米管基三极管场发射体的场发射屏蔽效应和电场模拟

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In this paper the electric field simulation of carbon nanotubes triode field emission devices is investigated. The geometry of CNTs and their arrangement on the substrate affect the screening effect and filed enhancement factor (β). In an array of nanotubes, for a distance smaller than the CNT length the screening effect is observed. The emission current density is related to the gate aperture and CNT shape. In a triode structure the screening effect occurs in the intertube distances about half of the CNT's length due to the presence of the gate plate. Furthermore, the presence of the metal-oxide gate has a favorable effect to minimize the screening effect and allows one to increase the density of CNT's in each array spot and to increase the cluster array density on the substrate, hence to increase the density of emission current and emitter sites where a high current density is required.
机译:本文研究了碳纳米管三极管场发射器件的电场仿真。碳纳米管的几何形状及其在基材上的排列会影响筛选效果和增强因子(β)。在纳米管阵列中,对于小于CNT长度的距离,观察到屏蔽效果。发射电流密度与栅极孔径和CNT形状有关。在三极管结构中,由于闸板的存在,屏蔽效应发生在大约CNT长度一半的管间距离中。此外,金属氧化物栅极的存在具有使屏蔽效果最小化的有利效果,并允许其增加每个阵列点中的CNT的密度并增加基板上的簇阵列密度,从而增加发射的密度。需要高电流密度的电流和发射极位置。

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