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An integrated experimental and theoretical study on the optical properties of uniform hairy noble metal nanoparticles

机译:一个集成的实验和理论研究光学性质的统一的毛茸茸的高贵金属纳米粒子

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摘要

We report a viable route to plasmonic nanoparticles with well-controlled sizes, shapes, and compositions. A series of monodisperse Ag and Au nanoparticles capped with polystyrene chains (i.e., "hairy" nanoparticles) are crafted by capitalizing on star-like diblock copolymers as nanoreactors. Such monodisperse nanoparticles render an accurate absorption spectrum, providing a strong basis for theoretical investigation into their optical properties. By combining the experimental study with the three-dimensional finite element calculation of electromagnetic field distributions, the contributions of both intra-band and inter-band transitions to plasmonic absorption are revealed. The calculated absorption spectra perfectly reproduce the experimental observations, including the peak positions, shapes, and trends of peak shifting or broadening as a function of nanoparticle sizes. The influences of nanoparticle dimensions and surface ligands on plasmonic absorption of metallic nanoparticles are also systematically explored.
机译:我们报告一个可行的电浆纳米粒子与控制大小,形状,和成分。Au纳米颗粒与聚苯乙烯链封顶(例如,“毛”纳米粒子)是精心设计的利用星一样diblock共聚物nanoreactors。呈现一个精确的吸收光谱,提供一个强大的基础理论研究他们的光学特性。与三维实验研究电磁场的有限元计算场分布,两者的贡献intra-band和波段间转换电浆吸收了。吸收光谱完全再现实验观察,包括峰值峰的位置、形状和趋势或转移拓宽纳米尺寸的函数。纳米颗粒尺寸的影响在电浆吸收表面配体金属纳米粒子系统探索。

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