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Determination of plasma frequency, damping constant, and size distribution from the complex dielectric function of noble metal nanoparticles

机译:从贵金属纳米颗粒的复介电函数确定等离子体频率,阻尼常数和尺寸分布

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摘要

This paper develops a novel method for simultaneously determining the plasma frequency and the damping constant in the bulk damped oscillator Drude model, based on experimentally measured real and imaginary parts of the metal refractive index in the IR wavelength range, lifting the usual approximation that restricts frequency values to the UV-deep UV region. Our method was applied to gold, silver, and copper, improving the relative uncertainties in the final values for (0.5%–1.6%) and for (3%–8%), which are smaller than those reported in the literature. These small uncertainties in and determination yield a much better fit of the experimental complex dielectric function. For the case of nanoparticles (Nps), a series expansion of the Drude expression (which includes and determined using our method) enables size-dependent dielectric function to be written as the sum of three terms: the experimental bulk dielectric function plus two size corrective terms, one for free electron, and the other for bound-electron contributions. Finally, size distribution of nanometric and subnanometric gold Nps in colloidal suspension was determined through fitting its experimental optical extinction spectrum using Mie theory based on the previously determined dielectric function. Results are compared with size histogram obtained from Transmission Electron Microscopy (TEM).
机译:本文基于实验测量的红外波长范围内金属折射率的实部和虚部,开发了一种同时确定体阻尼振荡器Drude模型中的等离子体频率和阻尼常数的新颖方法,解除了通常的近似方法,从而限制了频率。值到深紫外线区域。我们的方法应用于金,银和铜,提高了最终值的相对不确定性(0.5%–1.6%)和(3%–8%),这些不确定度小于文献报道的结果。这些小的不确定性和确定性使得实验复杂介电函数的拟合度更好。对于纳米颗粒(Nps),通过对Drude表达式进行扩展(包括并使用我们的方法确定),可以将尺寸相关的介电函数写为三个项的总和:实验性体积介电函数加两个尺寸校正量术语,一个代表自由电子,另一个代表束缚电子。最后,通过使用Mie理论基于先前确定的介电函数拟合其实验消光光谱,确定了胶体悬浮液中纳米和亚纳米金Nps的尺寸分布。将结果与从透射电子显微镜(TEM)获得的尺寸直方图进行比较。

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