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Using spectroscopic ellipsometry to characterize and apply the optical constants of hollow gold nanoparticles

机译:使用椭圆偏振光谱法表征和应用空心金纳米颗粒的光学常数

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In this paper, we report the optical constants (refractive index, extinction coefficient) of self-assembled hollow gold nanoparticle (HGN) monolayers determined through spectroscopic ellipsometry (SE). We prepared a series of HGNs exhibiting various morphologies and surface plasmon resonance (SPR) properties. The extinction coefficient (k) curves of the HGN monolayers exhibited strong SPR peaks located at wavelengths that followed similar trends to those of the SPR positions of the HGNs in solution. The refractive index (n) curves exhibited an abnormal dispersion that was due to the strong SPR extinction. The values of Δn and k_(max) both correlated linearly with the particle number densities. From a comparison of the optical constant values of HGNs with those of solid Au nanoparticles (NPs), we used SE measurements to demonstrate a highly sensitive Si-based chemical sensor. HGNs display a slightly lower value ofkat the SPR peak but a much higher sensitivity to changes in the surrounding medium than do solid Au NPs.
机译:在本文中,我们报告了通过光谱椭偏法(SE)确定的自组装空心金纳米粒子(HGN)单层的光学常数(折射率,消光系数)。我们准备了一系列的HGN,表现出各种形态和表面等离振子共振(SPR)特性。 HGN单层的消光系数(k)曲线显示出很强的SPR峰,该峰位于与溶液中HGN的SPR位置相似的趋势下。折射率(n)曲线显示出异常色散,这是由于强烈的SPR消光引起的。 Δn和k_(max)的值均与粒子数密度线性相关。通过比较HGNs的光学常数值与固态Au纳米颗粒(NPs)的光学常数,我们使用SE测量来证明一种高灵敏度的基于Si的化学传感器。 HGNs的kat SPR峰值略低,但对周围介质变化的敏感性比固态Au NPs高得多。

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