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首页> 外文期刊>Nanotechnology >Photo generated charge transport studies of defects-induced shuttlecock-shaped ZnO/Ag hybrid nanostructures
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Photo generated charge transport studies of defects-induced shuttlecock-shaped ZnO/Ag hybrid nanostructures

机译:照片生成的缺陷诱导的羽毛状ZnO / Ag杂交纳米结构的电荷传输研究

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摘要

We report the stimulating effects of interfacial charge transfer process between spherical Ag nanoparticles and shuttlecock-shaped ZnO nanostructures observed by UV-visible spectroscopy and x-ray absorption spectroscopy. In specific, ZnO nanorods and shuttlecock-shaped ZnO/Ag nanostructures were developed using a simple chemical colloidal method and characterized for structural variations using XRD. The observed red shift in plasmonic peak and the increase in Urbach energy signify interfacial interactions and increased randomness in the hybrid ZnO/Ag nanostructures. Simultaneously, the enhanced intensity of deep-level emission in the ZnO/Ag hybrid suggests the increased recombination rate of electron-hole pairs. The red and blue emissions evolving with temperature subsequently suggests the presence of oxygen vacancies or zinc interstitials in the system. The decrease in intensities and emerging features in O K-edge and Zn L-edge indicates the charge transfer from Ag to ZnO at the interface of ZnO/Ag hybrids. Moreover, the differences in absorption edges with alternating light on/off conditions were analyzed for the exploitation of this ZnO-based system in various applications.
机译:我们报道了通过紫外可见光谱和x射线吸收光谱观察到的球形银纳米颗粒和羽毛球状ZnO纳米结构之间的界面电荷转移过程的刺激效应。具体而言,使用简单的化学胶体方法开发了ZnO纳米棒和毽子形ZnO/Ag纳米结构,并使用XRD对结构变化进行了表征。观察到的等离子体峰红移和Urbach能的增加表明了ZnO/Ag杂化纳米结构中的界面相互作用和增加的随机性。同时,ZnO/Ag杂化物中深能级发射强度的增强表明电子-空穴对的复合速率增加。随着温度的变化,红色和蓝色的辐射随后表明系统中存在氧空位或锌间隙。K边和Zn L边的强度降低和出现的特征表明,在ZnO/Ag杂化物的界面上,电荷从Ag转移到ZnO。此外,还分析了交替光开关条件下吸收边的差异,以便在各种应用中开发这种ZnO基系统。

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