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Angular reflectance of suspended gold, aluminum and silver nanospheres on a gold film: Effects of concentration and size distribution

机译:金膜上悬浮的金,铝和银纳米球的角反射率:浓度和尺寸分布的影响

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In this article, we describe a parametric study of the effects of the size distribution (SD) and the concentration of nanospheres in ethanol on the angular reflectance. Calculations are based on an effective medium approach in which the effective dielectric constant of the mixture is obtained using the Maxwell–Garnett formula. The detectable size limits of gold, aluminum, and silver nanospheres on a 50-nm-thick gold film are calculated to investigate the sensitivity of the reflectance to the SD and the concentration of the nanospheres. The following assumptions are made: (1) the total number of particles in the unit volume of suspension is constant, (2) the nanospheres in the suspension on a gold film have a SD with three different concentrations, and (3) there is no agglomeration and the particles have a log-normal SD, where the effective diameter, d eff and the effective variance, ν eff are given. The dependence of the reflectance on the d eff, ν eff, and the width of the SD are also investigated numerically. The angular variation of the reflectance as a function of the incident angle shows a strong dependence on the effective size of the metallic nanospheres. The results confirm that the size of the nanospheres (d eff <100 nm) can be detected by reflected light from the bottom surface of a gold film with a reasonable sensitivity if a proper angle of incidence is chosen based on the type of metallic particles on a gold thin film at λ = 632 nm. We show that the optimum incident angle to characterize the size of nanospheres on a gold film is between 70° and 75° for a given concentration with a particular SD.
机译:在本文中,我们描述了尺寸分布(SD)和乙醇中纳米球浓度对角反射率影响的参数研究。计算基于有效介质法,其中使用麦克斯韦-加纳特公式获得混合物的有效介电常数。计算在50 nm厚的金膜上金,铝和银纳米球的可检测尺寸极限,以研究反射率对SD的敏感度和纳米球的浓度。做出以下假设:(1)悬浮液单位体积中的粒子总数是恒定的;(2)金膜上悬浮液中的纳米球的SD带有三种不同的浓度;(3)没有团聚和粒子具有对数正态SD,其中给出了有效直径d eff 和有效方差ν eff 。反射率对d eff ,ν eff 和SD宽度的依赖性也得到了数值研究。反射率的角度变化作为入射角的函数显示出对金属纳米球有效尺寸的强烈依赖性。结果证实,如果选择合适的入射角,则可以以合理的灵敏度通过金膜底表面的反射光检测纳米球的尺寸(d eff <100 nm)。 λ= 632 nm的金薄膜上的金属颗粒的类型。我们表明,对于特定SD的给定浓度,表征金膜上纳米球尺寸的最佳入射角在70°至75°之间。

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