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Analysis of Field Emission Properties of Carbon Nanocoils for Imaging Materials

机译:成像材料碳纳米膜的场排放性能分析

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Carbon nanotubes and nanocoils are expected as the charging materials and electron gun for the imaging devices. It is synthesized for carbon nanocoils with different diameters by the catalytic thermal decomposition of acetylene using iron-indium-tin-oxide catalysts. It is found that the turn-on voltage is decreased by decreasing the average diameter of the grown carbon nanocoils. The turn on voltage of as low as 30 V at the electrodes' gap of 130 μm has been achieved when the coil diameter is decreased to 60 nm. The calculation for the concentration of the electric field on the coil surface has been performed using a finite element method. It is obtained that the strength of electric field around the top ring of a coil is increased with the decrease of the tubular diameter of the coil and has a similar value for that at the tip of a carbon nanotube, suggesting that the efficiency of the field e-mission from nanocoils would be higher than that from nanotubes. These results can explain the good stability of field emission from carbon nanocoils.
机译:预期碳纳米管和纳米膜作为成像装置的充电材料和电子枪。使用铁 - 铟 - 氧化锡催化剂,通过催化热分解乙炔的碳纳米膜合成。发现通过降低生长的碳纳米壳的平均直径来降低导通电压。当线圈直径降低至60nm时,已经实现了电极在130μm的电极间隙处的电压为低至30V的电压。使用有限元方法进行了线圈表面上的电场浓度的计算。获得的是,通过线圈的管状直径的减小,线圈顶环周围的电场强度增加,并且在碳纳米管的尖端处具有类似的值,表明该场的效率来自纳米油的E-使命将高于纳米管的E-任务。这些结果可以解释来自碳纳米壳的场发射的良好稳定性。

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