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Biosensing potential of three-layered gold-dielectric-gold nanoshells: Sensitivity of interdistance of resonance light scattering peaks to the local dielectric environment

机译:三层金介电金纳米壳的生物传感潜力:共振光散射峰的相距对局部介电环境的敏感性

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摘要

The resonance light scattering cross section of the three-layered gold-dielectric-gold nanoshell is calculated using the quasi-static theory. The results show that three-layered gold-dielectric-gold nanoshells have three types of resonance light scattering spectra under different geometrical parameters, which are explained using plasmon hybridization theory. In the common type containing two resonance light scattering peaks, the longer wavelength peak red-shifts while the shorter one blue-shifts as the refractive index of the physical environment increase. This physical environment dependent interdistance enhancing between the two peaks shows the potential of the three-layered gold-dielectric-gold nanoshells used as biosensor based on resonance light scattering. The followed calculations about the comparison of sensitivity to the local dielectric environment between the three- and two-layered gold nanoshells further verify that point. At last, the calculated results that the three-layered gold-dielectric-gold nanoshells with small inner core and thin outer gold shell have the highest sensitivity are also obtained.
机译:利用准静态理论计算了三层金介电金纳米壳的共振光散射截面。结果表明,三层金介电金纳米壳在不同几何参数下具有三种共振光散射光谱,并用等离激元杂交理论对其进行了解释。在包含两个共振光散射峰的普通类型中,随着物理环境折射率的增加,较长的波长峰会发生红移,而较短的蓝峰会发生蓝移。两个峰之间的这种依赖于物理环境的距离增强显示了基于共振光散射的用作生物传感器的三层金电介质金纳米壳的潜力。随后进行的有关三层和两层金纳米壳对局部电介质环境敏感性比较的计算进一步验证了这一点。最后,得到了内核小,外金壳薄的三层金介电金纳米壳的灵敏度最高的计算结果。

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