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Thermal-desorption induced enhancement and patterning of ultraviolet emission in chemically grown ZnO

机译:热解吸诱导的化学生长ZnO中紫外线发射的增强和图案化

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摘要

A significant enhancement of ultraviolet (UV) emission has been observed in chemically grown ZnO samples using a thermal treatment at 200 deg C. The intensity of UV emission can reach up to fifty times its initial value, while that of the visible emission decreases to a negligible value. Based on the thermal desorption spectroscopy results, the origin of this effect was attributed to the reduction of non-irradiative centres and hydrogen passivation through desorption of adsorbed water and hydroxyl groups. By precisely controlling the local desorption in ZnO with an electron beam, we have not only created optical nanotags on individual ZnO nanorods, but have also written sub-micrometre UV-emission patterns on ZnO films. It is believed that this patterning technique will extend the applications of ZnO to many other fields, such as high-density optical data storage and high-resolution UV-emission displays.
机译:在200摄氏度的热处理下,化学生长的ZnO样品中观察到了紫外线(UV)的显着增强。紫外线的发射强度可以达到其初始值的50倍,而可见光的发射强度可以降低到初始值的50倍。可以忽略不计的价值。根据热脱附光谱学结果,该效应的起因归因于非辐照中心的减少和通过吸附水和羟基的脱附而使氢钝化。通过用电子束精确控制ZnO中的局部解吸,我们不仅在单个ZnO纳米棒上创建了光学纳米标签,而且还在ZnO薄膜上写入了亚微米的UV发射图案。相信这种图案化技术将把ZnO的应用扩展到许多其他领域,例如高密度光学数据存储和高分辨率UV发射显示器。

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