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On the mechanism of improvement of field emission properties of carbon-coated field emitters

机译:碳包覆场致发射体场致发射特性改善的机理研究

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摘要

To clarify the origin of the superior field emission characteristics of carbon-coated emitters, the authors investigated the field enhancement and the work function of model systems calculated by numerical simulations. They propose that the field enhancement is due to the triple junctions, which are distributed on the surface of the carbon film consisting of sp3 (diamond-like) insulating and sp2 (graphite-like) conducting nanometer-sized grains. The electric field around the triple junction is one order of magnitude higher than at other places. Based on ab initio density functional theory calculations, the authors found that (1) the work functions of diamond and graphite dramatically decrease down to 3–3.6 eV upon hydrogen termination, and (2) the effective work functions of these models decrease to 2–2.5 eV by applying an external electric field of 2.57 × 107 V/cm. They also estimated the field emission current from the potential distribution and the local density of states under the external electric field applied. As a result, the authors found that hydrogen termination significantly increases the field emission current. The results suggest that the triple junction and hydrogen termination are promising candidates as the mechanism of improving the emission of the carbon-coated emitters.
机译:为了阐明碳涂层发射器优越的场发射特性的起源,作者研究了通过数值模拟计算得出的模型系统的场增强和功函数。他们认为,场增强是由于三重结,它们分布在碳膜的表面上,该碳结由sp3(类金刚石)绝缘体和sp2(类石墨)导电纳米级晶粒组成。三重结周围的电场比其他地方的电场高一个数量级。基于从头算密度函数理论的计算,作者发现(1)氢终止时,金刚石和石墨的功函数急剧下降至3-3.6 eV,(2)这些模型的有效功函数减小至2–通过施加2.57×107 V / cm的外部电场可得到2.5 eV。他们还根据施加的外部电场下的电位分布和状态的局部密度来估算场发射电流。结果,作者发现氢终止显着增加了场发射电流。结果表明,三键结和氢封端有望成为改善碳涂层发射极发射的机制。

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