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三层金属纳米壳层的可调谐近红外光学特性

Tunable near-infrared optical properties of three-layered metal nanoshells.

作者信息

Wu Dajian, Xu Xiaodong, Liu Xiaojun

机构信息

Key Laboratory of Modern Acoustics of MOE, Nanjing University, Nanjing 210093, China.

出版信息

J Chem Phys. 2008 Aug 21;129(7):074711. doi: 10.1063/1.2971179.

Abstract

The extinction spectra of a three-layered metal nanoshell, which consists of a particle with a dielectric core, a middle Ag (Au) layer, and an outer Au (Ag) shell, have been investigated by means of the Mie theory. With a decrease in the outer shell thickness or the middle layer thickness, the wavelengths of the localized surface plasmon resonance (LSPR) for SiO(2)-Ag-Au (SiO(2)-Au-Ag) nanoshells show distinct redshifts and the full widths at half maximum (FWHMs) for the dipole peaks in the extinction spectra decrease first and then increase. We have further investigated the influence of the embedding medium on the LSPRs for SiO(2)-Ag-Au and SiO(2)-Au-Ag nanoshells and found that the resonance wavelengths of the particles show redshift and the FWHM of the dipole peak increases with increasing the dielectric constant of the embedding medium. The calculated results indicate that the LSPR of the three-layered gold-silver nanoshells can be controlled to the near-infrared region by changing the geometry, which has practical biomedical application.

摘要

利用米氏理论研究了由介电核粒子、中间的银(金)层和外层的金(银)壳组成的三层金属纳米壳的消光光谱。随着外壳厚度或中间层厚度的减小,SiO(2)-Ag-Au(SiO(2)-Au-Ag)纳米壳的局域表面等离子体共振(LSPR)波长出现明显红移,消光光谱中偶极峰的半高宽(FWHM)先减小后增大。我们进一步研究了嵌入介质对SiO(2)-Ag-Au和SiO(2)-Au-Ag纳米壳LSPRs的影响,发现随着嵌入介质介电常数的增加,粒子的共振波长出现红移,偶极峰的FWHM增大。计算结果表明,通过改变几何结构,三层金银纳米壳的LSPR可以被控制到近红外区域,这具有实际的生物医学应用价值。

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