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Plasmonic surface nanostructuring of Au-dots@SiO2 via laser-irradiation induced dewetting

机译:通过激光照射诱导脱水的Au-dots @ SiO2的等离子体表面纳米结构

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摘要

The in situ observation of Au dot formation and the self-assembly dynamics of Au nanoparticles (NPs) was successfully demonstrated via dewetting of Au thin films on SiO2 glass substrates under nano-second pulsed laser irradiation using a multi-quantum beam high-voltage electron microscope. Moreover, using electron energy-loss spectroscopy (EELS) performed in a scanning transmission electron microscope (STEM), the plasmonic properties of the formed Au/SiO2 nanostructure were analyzed to demonstrate its validity in advanced optical devices. The uniformly distributed Au NPs evolved into a dot alignment through movement and coalescence processes was demonstrated in this in situ observation. We carried out the plasmon-loss images of the plan view and the cross-section of the Au/SiO2 nanostructures were obtained at the plasmon-loss peak energy for investigate the three-dimensional distribution of surface plasmon. Furthermore, discrete-dipole approximation (DDA) calculations were used to simulate the plasmonic properties, such as the surface plasmon resonance and the surface plasmon field distribution, of isolated single Au/SiO2 nanostructures. This STEM-EELS-acquired surface plasmon map of the cross-sectional sample is in excellent agreement with the DDA calculations. This results demonstrated the influence of the contact condition between Au NP and SiO2 glass on the plasmonic properties, and may improve the technology for developing advanced optical devices.
机译:通过使用多量子束高压电子在纳米型脉冲激光照射下的SiO2玻璃基板上的Au薄膜脱水,成功地证明了Au点形成和Au纳米颗粒(NPS)的自组装动力学的原位观察。显微镜。此外,在扫描透射电子显微镜(茎)中使用的电子能损光谱(EEL),分析形成的AU / SiO2纳米结构的等离子体性能以展示其在先进光学器件中的有效性。通过运动和聚结方法演化为点对准的均匀分布的Au nps在原位观察中证明了圆点对齐。我们进行了平面图的等离子体损耗图像,并且在等离子体损耗峰值能量下获得了Au / SiO2纳米结构的横截面,以研究表面等离子体的三维分布。此外,采用离散偶极逼近(DDA)计算来模拟分离的单个Au / SiO2纳米结构的等离子体性质,例如表面等离子体谐振和表面等离子体场分布。横截面样本的该茎鳗所获得的表面等离子体地图与DDA计算非常一致。结果表明,在等离子体性能下Au NP和SiO2玻璃之间的接触状况的影响,并且可以改善开发先进光学装置的技术。

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