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金-银双金属纳米盒和纳米笼的相关瑞利散射光谱与扫描电子显微镜研究

Correlated Rayleigh Scattering Spectroscopy and Scanning Electron Microscopy Studies of Au-Ag Bimetallic Nanoboxes and Nanocages.

作者信息

Hu Min, Chen Jingyi, Marquez Manuel, Xia Younan, Hartland Gregory V

机构信息

Department of Chemistry, UniVersity of Washington, Seattle, Washington 98195-1700.

出版信息

J Phys Chem C Nanomater Interfaces. 2007;111(34):12558-12565. doi: 10.1021/jp073691v.

Abstract

The optical properties of hollow nanoparticles (Au-Ag nanoboxes and nanocages) were investigated by recording Rayleigh scattering spectra of single particles, whose morphology and composition had been analyzed by scanning electron microscopy (SEM). This was achieved by depositing the particles on optically transparent substrates with registration marks, which are compatible with SEM imaging. Fitting the experimental spectra to a Lorentzian function yields the frequencies and homogeneous line widths of the plasmon resonance for the particles. The resonances are extremely broad, with dephasing times of 2-5 fs. Analysis of the line width data using the dimensions determined by SEM shows that the broadening is due to a combination of electron-surface scattering and radiation damping. The sensitivity of the plasmon resonance to the dielectric constant of the environment was also investigated by adding a drop of water to the substrate. The nanoboxes show similar dielectric sensitivities compared to other metal nanoparticle systems. A significant increase in the line width was also observed for the nanoboxes in water compared with air. This was attributed to increased radiation damping in the environment with a higher dielectric constant. Both the red shift and the increase in line width are reversible.

摘要

通过记录单个粒子的瑞利散射光谱来研究中空纳米粒子(金 - 银纳米盒和纳米笼)的光学性质,这些粒子的形态和组成已通过扫描电子显微镜(SEM)进行了分析。这是通过将粒子沉积在带有与SEM成像兼容的定位标记的光学透明基板上来实现的。将实验光谱拟合为洛伦兹函数可得出粒子等离子体共振的频率和均匀线宽。这些共振极其宽泛,退相时间为2 - 5飞秒。使用由SEM确定的尺寸对线宽数据进行分析表明,展宽是电子 - 表面散射和辐射阻尼共同作用的结果。还通过在基板上滴一滴水来研究等离子体共振对环境介电常数的敏感性。与其他金属纳米粒子系统相比,纳米盒表现出相似的介电敏感性。与在空气中相比,在水中的纳米盒的线宽也显著增加。这归因于在具有较高介电常数的环境中辐射阻尼增加。红移和线宽增加都是可逆的。

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