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Nanoscale mapping of plasmon and exciton in ZnO tetrapods coupled with Au nanoparticles

机译:ZnO四足动物与金纳米粒子耦合的等离激元和激子的纳米级标测

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摘要

Metallic nanoparticles can be used to enhance optical absorption or emission in semiconductors, thanks to a strong interaction of collective excitations of free charges (plasmons) with electromagnetic fields. Herein we present direct imaging at the nanoscale of plasmon-exciton coupling in Au/ZnO nanostructures by combining scanning transmission electron energy loss and cathodoluminescence spectroscopy and mapping. The Au nanoparticles (~30 nm in diameter) are grown in-situ on ZnO nanotetrapods by means of a photochemical process without the need of binding agents or capping molecules, resulting in clean interfaces. Interestingly, the Au plasmon resonance is localized at the Au/vacuum interface, rather than presenting an isotropic distribution around the nanoparticle. On the contrary, a localization of the ZnO signal has been observed inside the Au nanoparticle, as also confirmed by numerical simulations.
机译:由于自由电荷(等离子体激元)的集体激发与电磁场之间的强相互作用,金属纳米粒子可用于增强半导体中的光吸收或发射。在这里,我们通过结合扫描透射电子能量损失和阴极荧光光谱和绘图,在Au / ZnO纳米结构中的等离激子-激子耦合的纳米级上直接成像。金纳米颗粒(直径约30 nm)通过光化学过程在ZnO纳米四脚架上原位生长,不需要粘合剂或封端分子,从而形成干净的界面。有趣的是,Au等离子体共振位于Au /真空界面,而不是在纳米粒子周围呈现各向同性分布。相反,已经通过数值模拟证实了在Au纳米颗粒内部观察到ZnO信号的局部化。

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