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Enhancing spectral shifts of plasmon-coupled noble metal nanoparticles for sensing applications

机译:增强等离激元耦合的贵金属纳米粒子的光谱位移,以用于传感应用

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摘要

Noble metal nanoparticles possess very large scattering cross-sections, which make them useful as tags in biosensing assays with the potential to detect even single binding events. In this study, we investigated the effects of nanoparticle size on the shift in the light scattering spectrum following formation of Au–Au, Ag–Ag or Ag–Au dimers using FDTD simulations. We discuss the use of a color camera to detect these spectral changes for application in a target-induced dimerization sensing assay. Dimerization of Au nanoparticles induced a larger shift in color compared to Ag nanoparticles. Heterodimers composed of 60 nm Ag and 40 nm Au demonstrated an even larger spectral shift and color response compared to the best homodimer pair (80–40 nm Au). The increased spectral shift of the Ag–Au heterodimer was subsequently observed experimentally for the DNA-induced dimerization of nanoparticles, showing that careful selection of nanoparticle size and composition can significantly enhance recognition of nanoparticle dimerization events for use in (color) sensing assays.
机译:贵金属纳米粒子具有非常大的散射截面,这使其在生物传感分析中可用作标签,甚至有可能检测单个结合事件。在这项研究中,我们使用FDTD模拟研究了Au-Au,Ag-Ag或Ag-Au二聚体形成后纳米颗粒尺寸对光散射光谱偏移的影响。我们讨论了使用彩色相机检测这些光谱变化,以用于目标诱导的二聚化检测方法。与Ag纳米颗粒相比,Au纳米颗粒的二聚化引起更大的颜色变化。与最佳同二聚体对(80–40 nm Au)相比,由60 nm Ag和40 nm Au构成的异二聚体表现出更大的光谱偏移和颜色响应。随后通过实验观察到,DNA诱导的纳米粒子二聚化增加了Ag-Au异二聚体的光谱位移,这表明谨慎选择纳米粒子的大小和组成可以显着增强纳米粒子二聚化事件的识别能力,以用于(颜色)传感检测。

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