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Field emission from ZnS nanorods synthesized by radio frequency magnetron sputtering technique

机译:射频磁控溅射技术合成的ZnS纳米棒的场发射

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The field emission property of zinc sulphides nanorods synthesized in the thin film form on Si substrates has been studied. It is seen that ZnS nanorod thin films showed good field emission properties with a low-macroscopic turn-on field (2.9-6.3 V/mu m). ZnS nanorods were synthesized by using radio frequency magnetron sputtering of a polycrystalline prefabricated ZnS target at a relatively higher pressure (10(-1) mbar) and at a lower substrate temperature (233-273 K) without using any catalyst. Transmission electron microscopic image showed the formation of ZnS nanorods with high aspect ratio (> 60). The field emission data were analysed using Fowler-Nordhiem theory and the nearly straight-line nature of the F-N plots confirmed cold field emission of electrons. It was also found that the turn-on field decreased with the decrease of nanorod's diameters. The optical properties of the ZnS nanorods were also studied. From the measurements of transmittance of the films deposited on glass substrates, the direct allowed bandgap values have been calculated and they were in the range 3.83-4.03 eV. The thickness of the films was similar to 600 nm. (c) 2006 Elsevier B.V. All rights reserved.
机译:研究了在硅衬底上以薄膜形式合成的硫化锌纳米棒的场发射特性。可以看出,ZnS纳米棒薄膜具有良好的场发射特性,且具有低宏观的开通场(2.9-6.3 V /μm)。 ZnS纳米棒是通过在不使用任何催化剂的情况下,在相对较高的压力(10(-1)mbar)和较低的基板温度(233-273 K)下使用多晶预制ZnS靶材进行射频磁控溅射合成的。透射电子显微镜图像显示具有高纵横比(> 60)的ZnS纳米棒的形成。使用Fowler-Nordhiem理论分析了场发射数据,F-N图的近乎直线的性质证实了电子的冷场发射。还发现,随着纳米棒直径的减小,导通场减小。还研究了ZnS纳米棒的光学性质。从沉积在玻璃基板上的薄膜的透射率的测量值中,已经计算出直接允许的带隙值,并且其在3.83-4.03 eV的范围内。膜的厚度类似于600nm。 (c)2006 Elsevier B.V.保留所有权利。

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