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Heterogranular-Structured Diamond-Gold Nanohybrids: A New Long-Life Electronic Display Cathode

机译:异晶结构的金刚石-金纳米杂化物:一种新型的长寿命电子显示阴极。

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摘要

In the age of hand-held portable electronics, the need for robust, stable and long-life cathode materials has become increasingly important. Herein, a novel heterogranular-structured diamond-gold nanohybrids (HDG) as a long-term stable cathode material for field-emission (FE) display and plasma display devices is experimentally demonstrated. These hybrid materials are electrically conductive that perform as an excellent field emitters, viz, low turn-on field of 2.62 V/mu m with high FE current density of 4.57 mA/cm(2) (corresponding to a applied field of 6.43 V/mu m) and prominently high lifetime stability lasting for 1092 min revealing their superiority on comparison with the other commonly used field emitters such as carbon nanotubes, graphene, and zinc oxide nanorods. The process of fabrication of these HDG materials is direct and easy thereby paving way for the advancement in next generation cathode materials for high-brightness FE and plasma-based display devices.
机译:在手持便携式电子设备的时代,对坚固,稳定和长寿命阴极材料的需求变得越来越重要。在本文中,通过实验证明了新型的异质颗粒结构的金刚石-金纳米复合物(HDG)作为用于场发射(FE)显示和等离子体显示装置的长期稳定的阴极材料。这些混合材料具有导电性,可作为出色的场发射器,即2.62 V /μm的低导通场和4.57 mA / cm(2)的高FE电流密度(对应于6.43 V / V的施加场)微米)和长达1092分钟的突出的高寿命稳定性,与其他常用的场发射体(例如碳纳米管,石墨烯和氧化锌纳米棒)相比,它们具有优越性。这些HDG材料的制造过程是直接且容易的,从而为用于高亮度FE和基于等离子体的显示装置的下一代阴极材料的发展铺平了道路。

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