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Growth of ZnO Nanowires by Vapour Solid Mechanism

机译:蒸汽固体机制ZnO纳米线的生长

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The growth of zinc oxide nanowires is further investigated by thermal evaporation method and is discussed with respect to vapour-solid (V-S) growth mechanism. In this paper, ZnO nanowires were synthesized on glass substrate without the use of any catalyst with a constant flow of argon gas 1.36 psig and oxygen gas of 0.34 psig. Zinc powder of 99.99% purity is placed in a horizontal furnace and exposed to temperature of 600°C for 90 minutes. The surface morphology of the deposited zinc oxide is investigated by the atomic force microscopy (AFM) images and it was found that the deposited ZnO has a rough surface while field-emission scanning electron microscopy (FESEM) confirms the morphology of the ZnO nanowires. Photoluminescence (PL) spectra indicate that the optical quality of the deposited structure is potentially excellent with high energy excitonic emission close to the band edge which is assigned to the surface exciton in ZnO at 3.4eV.
机译:通过热蒸发方法进一步研究氧化锌纳米线的生长,并相对于蒸汽固体(V-S)生长机制讨论。在本文中,在玻璃基板上合成ZnO纳米线,而不使用任何催化剂,其恒定流动的氩气体1.36psig和0.34psig的氧气。将99.99%纯度的锌粉末置于水平炉中,暴露于600℃的温度90分钟。通过原子力显微镜(AFM)图像研究了沉积的氧化锌的表面形态,发现沉积的ZnO具有粗糙的表面,而场发射扫描电子显微镜(FeSEM)确认ZnO纳米线的形态。光致发光(PL)光谱表明沉积结构的光学质量可能优异,靠近带边缘的高能量激发器发射,其在3.4eV的ZnO中分配给ZnO的表面激子。

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