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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Optical properties of a metalo-dielectric nanocomposite: Small gold spherical nanoparticles in a cylindrical di-block copolymer
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Optical properties of a metalo-dielectric nanocomposite: Small gold spherical nanoparticles in a cylindrical di-block copolymer

机译:金属-电介质纳米复合材料的光学性质:圆柱形二嵌段共聚物中的小金球形纳米颗粒

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摘要

In this paper, the well-known effective medium approximation (EMA) and coupled dipole approximation (CDA) methods are employed to study the optical properties of a metal nanoparticle-block copolymer (MNP-BCP) nanocomposite. This approach is applied to study a system consisting of small gold spherical nanoparticles randomly distributed in the cylindrical micelles of a di-BCP. At first, the EMA method is used to obtain the effective dielectric function of a semi-metallic cylinder. Then, the extinction spectrum of the hexagonal 2D-array of semi-metallic cylinders is obtained by the CDA method. This procedure makes it possible to study simultaneously both the electromagnetic extinction of MNPs and incident light scattering from the 2D-array of polymeric cylinders. This work investigates the effect of different parameters such as filling fraction of MNPs, inter-cylinder distances, polarization and direction of the incident light and the difference between the refractive indices of the BCP blocks on the optical properties of the MNP-BCP nanocomposite system.
机译:在本文中,众所周知的有效介质近似(EMA)和偶合偶极近似(CDA)方法被用于研究金属纳米颗粒-嵌段共聚物(MNP-BCP)纳米复合材料的光学性质。该方法用于研究由分散在di-BCP的圆柱胶束中的小金球形纳米颗粒组成的系统。首先,使用EMA方法获得半金属圆柱体的有效介电函数。然后,通过CDA方法获得半金属圆柱六方二维阵列的消光光谱。该程序使得可以同时研究MNP的电磁消光和聚合物圆柱体二维阵列的入射光散射。这项工作研究不同参数的影响,如MNP的填充率,柱间距离,偏振和入射光的方向以及BCP嵌段的折射率之间的差异对MNP-BCP纳米复合材料系统的光学性能的影响。

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