An optical absorption of the composite with the nanoparticles, which are covered by the surfactant layer

IF 0.9 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
N. Smirnova, M.S. Maniuk, A. Korotun, I. Titov
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引用次数: 2

Abstract

The optical properties of the nanocomposite with two-layer spherical inclusions “metallic core – surfactant layer” have been studied in the work. The question connected with an influence of the processes at the interface “metal – adsorbate” on the excitation of the surface plasmonic resonances in the nanoparticle has been studied. The fact of splitting of the surface plasmonic resonance due to the influence of the absorption bond near the surface of the metallic nanoparticles and due to the emergence of the additional energy states has been established. The relations for the effective parameters which describe the losses of coherence under the scattering at the chemical interface have been obtained. The calculations for the frequency dependencies of the diagonal components of the dielectric permittivity tensor of the two-layer nanoparticle and for the absorption coefficient of the nanocomposite have been performed. It has been shown that the frequency dependencies for the real and imaginary parts of the longitudinal component of the dielectric tensor are close to the similar dependencies for the real and imaginary parts of the dielectric function for the spherical metallic nanoparticle. At the same time the real and imaginary parts of the transverse component weakly depend on the frequency in the visible spectrum and oscillate in the infrared range. It has been established that the absorption coefficient of the composite can have one or two maximums depending on the sizes and the material of the particles-inclusions.
复合材料与纳米颗粒的光学吸收,其被表面活性剂层覆盖
研究了两层球形夹杂物“金属芯-表面活性剂层”纳米复合材料的光学性质。研究了“金属-吸附”界面的过程对纳米粒子表面等离子体共振激发的影响。由于金属纳米颗粒表面附近的吸收键的影响和附加能态的出现,表面等离子体共振发生分裂的事实已经确立。得到了描述化学界面散射下相干损失的有效参数的关系。计算了两层纳米粒子介电常数张量对角线分量的频率依赖关系和纳米复合材料的吸收系数。结果表明,介质张量纵向分量的实部和虚部的频率依赖关系与球形金属纳米粒子的介电函数的实部和虚部的频率依赖关系接近。同时,横向分量的实部和虚部对可见光谱的频率依赖性较弱,在红外光谱范围内振荡。结果表明,复合材料的吸收系数可以有一个或两个最大值,这取决于颗粒-夹杂物的大小和材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.70
自引率
14.30%
发文量
83
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