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Controllable synthesis of ZnO nanoparticles with high intensity visible photoemission and investigation of its mechanism

机译:高强度可见光发射ZnO纳米粒子的可控合成及其机理研究

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摘要

ZnO is known as a good photoluminescent semiconductor due to its ability to emit visible light. However, the visible emission mechanism is still under debate. In this work, we have successfully synthesized nanoparticles using LiOH, KOH and NaOH as bases and have achieved visible emission of various colours, such as blue, cyan, green and orange. We demonstrate that LiOH is the most efficient base to control the properties of ZnO nanoparticle emission by varying LiOH concentration. Moreover, detailed studies by TEM, UV and XRD show that ZnO particle size plays an important role in the colour of the emitted light and smaller particles tend to emit shorter wavelength photons. The visible emission is suggested to arise from an electron transition from the conduction band to a deep-trapped defect state. Our experimental results suggest the presence of oxygen vacancies on the ZnO nanoparticle surface.
机译:ZnO由于其发射可见光的能力而被称为良好的光致发光半导体。但是,可见光发射机制仍在争论中。在这项工作中,我们已经成功地使用LiOH,KOH和NaOH作为碱合成了纳米粒子,并实现了各种颜色的可见光发射,例如蓝色,青色,绿色和橙色。我们证明LiOH是通过改变LiOH浓度来控制ZnO纳米粒子发射特性的最有效的基础。此外,通过TEM,UV和XRD进行的详细研究表明,ZnO粒径在发射光的颜色中起着重要作用,而较小的粒子则倾向于发射较短波长的光子。可见光发射是由电子从导带到深陷缺陷状态的跃迁引起的。我们的实验结果表明,ZnO纳米颗粒表面存在氧空位。

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