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Plasmonic polymers unraveled through single particle spectroscopy

机译:电浆通过单一聚合物瓦解粒子光谱

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摘要

Plasmonic polymers are quasi one-dimensional assemblies of nanoparticles whose optical responses are governed by near-field coupling of localized surface plasmons. Through single particle extinction spectroscopy correlated with electron microscopy, we reveal the effect of the composition of the repeat unit, the chain length, and extent of disorder on the energies, intensities, and line shapes of the collective resonances of individual plasmonic polymers constructed from three different sizes of gold nanoparticles. Our combined experimental and theoretical analysis focuses on the superradiant plasmon mode, which results from the most attractive interactions along the nanoparticle chain and yields the lowest energy resonance in the spectrum. This superradiant mode redshifts with increasing chain length until an infinite chain limit, where additional increases in chain length cause negligible change in the energy of the superradiant mode. We find that, among plasmonic polymers of equal width comprising nanoparticles with different sizes, the onset of the infinite chain limit and its associated energy are dictated by the number of repeat units and not the overall length of the polymer. The intensities and linewidths of the superradiant mode relative to higher energy resonances, however, differ as the size and number of nanoparticles are varied in the plasmonic polymers studied here. These findings provide general guidelines for engineering the energies, intensities, and line shapes of the collective optical response of plasmonic polymers constructed from nanoparticles with sizes ranging from a few tens to one hundred nanometers.
机译:电浆准一维聚合物的组装纳米粒子的光学反应是由近场耦合的局部表面等离子体激元。粒子的消光光谱相关电子显微镜,我们显示的效果重复单元组成,链的长度,和程度上的障碍的能量,强度和线形状的集体个人电浆共振引起的聚合物由三种不同大小的金子纳米粒子。理论分析的重点是超辐射等离子体模式的结果沿着纳米粒子的吸引作用链和收益率最低的能量共振频谱。随着链长,直到无限链限制,额外增加链长度引起的能量变化可以忽略不计超辐射模式。电浆聚合物组成相同的宽度纳米粒子与大小不同,发病无限链限制及其相关能量是由重复单位的数量而不是总长度的聚合物。超辐射的强度和线宽相对于更高的能量共振模式,然而,不同的大小和数量纳米粒子在电浆是多种多样的聚合物的研究。一般工程的能量准则,强度和线形状的集体光响应聚合物的电浆由纳米粒子与大小不等从几十到一百纳米。

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