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Optimized performances of tetra pod-like ZnO nanostructures for a triode structure field emission planar light source

机译:优化性能的利乐荚状的氧化锌纳米结构对于一个三极管结构字段发射平面光源

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摘要

Tetrapod-like ZnO (T-ZnO) nanostructures were synthesized by a simple vapor phase oxidation method without any catalysts or additives. We optimized the performances of T-ZnO nanostructures by adjusting the partial pressure of Zn vapour in the total pressure of the quartz chamber and obtained T-ZnO nano-structure materials of high purity, uniform morphology and size and high aspect ratio with a low turn-on electric field of 2.75 V μm~(-1), a large field enhancement factor of 3410 and good field emission stability for more than 70 hour continuous emission. Besides, based on the optimized T-ZnO, we developed metal grid mask-assisted water-based electrostatic spraying technology, and fabricated a large-scale, pollution-free, hole-shaped array T-ZnO nanostructure cathode used in a triode structure field emission planar light source. The controllable performances of the triode device were intensively investigated and the results showed that the triode device uniformly illuminated with a luminous intensity as high as 8000 cd m~2 under the conditions of 200 V grid voltage and 3300 V anode voltage. The research in this paper will benefit the development of a high performance planar light source based on T-ZnO nanostructures.
机译:Tetrapod-like氧化锌纳米结构(T-ZnO)合成了一个简单的汽相氧化方法没有任何催化剂和添加剂。优化T-ZnO的表演纳米结构通过调整部分压力锌蒸气的石英的总压强室,并获得T-ZnO纳米结构材料的纯度高,形态和制服大小和高纵横比和低刺激电场的2.75 Vμm ~(1),一个大油田增强3410倍和良好的领域排放稳定超过70小时连续发射。优化T-ZnO,我们开发了金属网格mask-assisted水性静电喷涂技术和制造大规模的,无污染,hole-shaped T-ZnO数组纳米结构阴极用于三极管的结构场发射平面光源。三极管的可控性能的设备深入调查,结果呢表明,三极管设备一致明亮的发光强度高达8000 cd m ~ 2条件下200 V电网电压和3300 V阳极电压。本文将高的发展中获益基于T-ZnO性能平面光源nanostructures。

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