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Enhanced Field Emission Characteristics Of Zinc Oxide Mixed carbon Nano-tubes Films

机译:氧化锌混合碳纳米管薄膜的增强的场发射特性

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A composite material of Zinc oxide and carbon nano-tubes (ZnO-CNTs) paste was synthesized by mixing multi-wall CNTs, ZnO nano-grains and organic vehicles. The microstructures and the morphologies of screen-printed films were characterized by field-emission scanning electron microscope. Results show that ZnO flakes geometrically matched with CNTs by filling into the interspaces of CNTs or directly covering upon CNTs. The field emission characteristics of films are found to be greatly effected by ZnO nano-grains. Especially, the turn-on electric field of ZnO-CNT film (1.17 V/μm) which is far lower than that of usual CNT films (1.70 V/μm). Furthermore, except that better emission stability is achieved, brightness and emission uniformity are notably enhanced as well. It can be speculated that the special microstructures of ZnO mixed CNT films dominate the enhanced electrical conductivity, thermal conductivity, and effective emitters.
机译:通过将多壁碳纳米管,ZnO纳米颗粒和有机载体混合,合成了氧化锌和碳纳米管(ZnO-CNTs)膏的复合材料。用场发射扫描电子显微镜表征了丝网印刷薄膜的微观结构和形貌。结果表明,ZnO薄片通过填充到CNT的空隙中或直接覆盖在CNT上而与CNT几何匹配。发现薄膜的场发射特性受ZnO纳米颗粒的影响很大。尤其是,ZnO-CNT膜的导通电场(1.17 V /μm)远低于通常的CNT膜(1.70 V /μm)。此外,除了获得更好的发射稳定性之外,亮度和发射均匀性也显着提高。可以推测,ZnO混合CNT膜的特殊微观结构主导着增强的电导率,热导率和有效发射极。

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