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Influence of gold nanorod geometry on optical response

机译:金纳米棒的几何形状对光学响应的​​影响

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As noble metal nanoparticles are deployed into increasingly sophisticated environments, it is necessary to fully develop our understanding of nanoparticle behavior and the corresponding instrument responses. In this paper, we report on the optical response of three important gold nanorod configurations under dark field and differential interference contrast (DIC) microscopy after first establishing their absolute geometries with transmission electron microscopy (TEM). The observed longitudinal plasmon wavelengths of single nanorods are located at wavelengths consistent with previously developed theory. A dimer is shown exhibiting a multipole plasmon at wavelengths that are consistent with the dipole plasmon of single nanorods in the sample. DIC can also distinguish a single nanorod from a pair of uncoupled nanorods with an interparticle distance below the diffraction limit. The experimental observations are consistent with simulated DIC images using a DIC point spread function. The findings herein are a critical step toward being able to characterize nanorods in dynamic environments without the use of electron microscopy.
机译:随着贵金属纳米颗粒被部署到越来越复杂的环境中,有必要充分发展我们对纳米颗粒行为和相应仪器响应的理解。在本文中,我们首先通过透射电子显微镜(TEM)建立了它们的绝对几何形状后,报告了三种重要的金纳米棒在暗场和微分干涉对比(DIC)显微镜下的光学响应。观察到的单个纳米棒的纵向等离激元波长位于与先前开发的理论一致的波长处。显示的二聚体在与样品中单个纳米棒的偶极等离子体激元一致的波长下显示出多极等离子体激元。 DIC还可以将单个纳米棒与一对未耦合的纳米棒区分开,且粒子间距离低于衍射极限。实验观察结果与使用DIC点扩散函数的模拟DIC图像一致。本文的发现是在不使用电子显微镜的情况下能够表征动态环境中纳米棒的关键步骤。

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