On the evaluation of field emission parameters of V2O5 and TiO2 nanostructure cathodes

A. Singh, J. Kumar
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引用次数: 0

Abstract

The self-assembled V2O5 and TiO2 nanowires are prepared hydrothermally from vanadium (V) hydroxylamido complex and titanium oxide powder, respectively, and studied for their crystalline phase, morphology, and electron emission characteristics. V2O5 is shown to exhibit an orthorhombic phase with preferential growth of the (010) face along the [010] direction; wire size being diameter 100–400 nm, and length several micrometers. TiO2 nanowires depict a monoclinic β-phase with a typical diameter of ∼ 30 nm. Their bundles serve as potential cathodes giving electron emission following the Fowler–Nordheim (F-N) mechanism but from infinitely small areas with large field enhancement factors. In comparison, β-TiO2 provides better emission characteristics at similar operating parameters (e.g., low threshold voltage 250–400 V and current density 109−1013 A m−2). The unique properties (viz., tip geometry, roughness, and local field enhancement) of one-dimension (1D) nanowires make them prospective candidates for high-brightness electron sources and development of the display devices [1–7]. A simple procedure developed by the authors is applied successfully in actual evaluation of the field emission parameters from the current–voltage data. This involves F-N formulation with physical considerations like variation of work function, effective emission area, and field enhancement factor [31].
V2O5和TiO2纳米结构阴极场发射参数的评价
以钒(V)羟胺配合物和氧化钛粉为原料,水热法制备了自组装的V2O5和TiO2纳米线,并对其晶相、形貌和电子发射特性进行了研究。V2O5呈正交相,(010)面沿[010]方向优先生长;线材直径为100 - 400nm,长度为几微米。TiO2纳米线呈单斜β相,典型直径为~ 30 nm。它们的束作为潜在的阴极,按照Fowler-Nordheim (F-N)机制,从无限小的区域和大的场增强因子发出电子发射。相比之下,β-TiO2在相似的工作参数下(例如,低阈值电压250-400 V,电流密度109 - 1013 A m−2)具有更好的发射特性。一维(1D)纳米线的独特性质(即尖端几何形状、粗糙度和局部场增强)使其成为高亮度电子源和显示器件发展的潜在候选者[1-7]。作者开发的一种简单的方法成功地应用于实际中由电流-电压数据计算场发射参数。这涉及到考虑功函数变化、有效发射面积和场增强因子等物理因素的F-N公式[31]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
6.40
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