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Effects of Growth Conditions on Structural Properties of ZnO Nanostructures on Sapphire Substrate by Metal–Organic Chemical Vapor Deposition

机译:金属有机化学气相沉积对蓝宝石衬底上ZnO纳米结构的生长性能的影响

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摘要

ZnO was grown on sapphire substrate by metal–organic chemical vapor deposition using the diethylzinc (DEZn) and oxygen (O2) as source chemicals at 500 °C. Influences of the chamber pressure and O2/DEZn ratio on the ZnO structural properties were discussed. It was found that the chamber pressure has significant effects on the morphology of ZnO and could result in various structures of ZnO including pyramid-like, worm-like, and columnar grain. When the chamber pressure was kept at 10 Torr, the lowest full width at half-maximum of ZnO (002) of 175 arc second can be obtained. On the other hand, by lowering the DEZn flow rate, the crystal quality of ZnO can be improved. Under high DEZn flow rate, the ZnO nanowall-network structures were found to grow vertically on the sapphire substrate without using any metal catalysts. It suggests that higher DEZn flow rate promotes three-dimensional growth mode resulting in increased surface roughness. Therefore, some tip on the ZnO surface could act as nucleation site. In this work, the growth process of our ZnO nanowall networks is said to follow the self-catalyzed growth mechanism under high-DEZn flow rate.
机译:ZnO在金属-有机化学气相沉积中以二乙基锌(DEZn)和氧气(O2)作为源化学物质在500°C的条件下生长在蓝宝石衬底上。讨论了腔室压力和O2 / DEZn比对ZnO结构性能的影响。发现腔室压力对ZnO的形态有显着影响,并可能导致ZnO的各种结构,包括金字塔状,蠕虫状和柱状晶粒。当腔室压力保持在10 Torr时,可以获得ZnO(002)的一半最大最大值的最小全宽为175弧秒。另一方面,通过降低DEZn流量,可以提高ZnO的晶体质量。在高DEZn流量下,发现ZnO纳米壁网络结构在蓝宝石衬底上垂直生长,而无需使用任何金属催化剂。这表明较高的DEZn流量会促进三维生长模式,从而导致表面粗糙度增加。因此,ZnO表面的一些尖端可能充当成核位置。在这项工作中,我们的ZnO纳米壁网络的生长过程据说遵循高DEZn流量下的自催化生长机制。

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