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The Influence of Particle Size Distribution and Shell Imperfections on the Plasmon Resonance of Au and Ag Nanoshells

机译:粒径分布和壳缺陷对Au和Ag纳米壳等离子体共振的影响

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摘要

Au and Ag nanoshells are of interest for a wide range of applications. The plasmon resonance of such nanoshells is the property of interest and can be tuned in a broad spectral regime, ranging from the ultraviolet to the mid-infrared. To date, a large number of manuscripts have been published on the optics of such nanoshells. Few of these, however, address the effect of particle size distribution and metal shell imperfections on the plasmon resonance. Both are inherent to the chemical synthesis of metal nanoshells and therefore to a large extent unavoidable. It is of vital importance to understand their effect on the plasmon resonance, since this determines the scope and limitations of the technology and may have a direct impact on the application of such particles. Here, we elucidate the effect of particle size distribution and imperfections in the metal shell on the plasmon resonance of Au and Ag nanoshells. The size of the polystyrene core and the thickness of the Au and Ag shells are systematically varied to study their influence on the plasmon resonance, and the results are compared to values obtained through optical simulations using extended Mie theory and finite element method. Discrepancies between theory and practice are studied in detail and discussed extensively. Quantitative information on the minimum thickness of the metal shell, which is required to realize a satisfactory plasmon resonance of a metal nanoshell, is provided for Au and Ag.Electronic supplementary materialThe online version of this article (doi:10.1007/s11468-016-0345-8) contains supplementary material, which is available to authorized users.
机译:金和银纳米壳在广泛的应用中引起了人们的兴趣。这种纳米壳的等离子体共振是感兴趣的性质,并且可以在从紫外线到中红外的宽光谱范围内进行调谐。迄今为止,已经在这种纳米壳的光学器件上发表了大量手稿。但是,这些方法中很少有一种能解决粒径分布和金属壳缺陷对等离子体激元共振的影响。两者都是金属纳米壳化学合成所固有的,因此在很大程度上是不可避免的。了解它们对等离子体共振的影响至关重要,因为这决定了技术的范围和局限性,并且可能对此类粒子的应用产生直接影响。在这里,我们阐明了粒径分布和金属壳中的缺陷对Au和Ag纳米壳的等离子体共振的影响。系统地改变聚苯乙烯核的大小以及Au和Ag壳的厚度,以研究它们对等离子体共振的影响,并将结果与​​使用扩展Mie理论和有限元方法通过光学模拟获得的值进行比较。对理论与实践之间的差异进行了详细研究并进行了广泛讨论。对于Au和Ag,提供了实现金属纳米壳令人满意的等离子体共振所需的金属壳最小厚度的定量信息。电子补充材料本文的在线版本(doi:10.1007 / s11468-016-0345 -8)包含补充材料,授权用户可以使用。

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