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Effective medium theory of DNA-linked gold nanoparticle aggregates: effect of aggregate shape

机译:DNA连接金纳米粒子聚集体的有效培养学理论:骨料形状的影响

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We present a dynamical effective medium theory (EMT) of the dielectric properties of nanoparticle aggregates formed from DNA-linked gold nanoparticles. Experimental measurements show that such aggregates have reduced UV extinction and plasmon bands that are considerably red-shifted and broadened relative to the plasmon absorption feature observed in spectra of dispersed colloid. The EMT, which can be used to reproduce the observed spectral changes, is tested by comparing aggregate spectra calculated using the EMT dielectric function with spectra from explicit coupled particle calculations, and good agreement is found. The EMT dielectric function is used as well in discrete dipole calculations to calculate extinction spectra for a variety of aggregate shapes not amenable to analytic solution, and the sensitivity of the spectra to aggregate shape is examined. We find that the spectra are only weakly sensitive to aggregate shape, and conclude that, when calculating extinction of the DNA-linked aggregates for comparison with experiment, spherical shapes can be assumed.
机译:我们提出了一种动态有效的中学理论(EMT),其由DNA连接的金纳米颗粒形成的纳米粒子聚集体的介电性质。实验测量表明,这种聚集体具有降低的UV消光和等离子体条带,其相对于在分散胶体的光谱中观察到的等离子体吸收特征相当偏振和扩大。通过比较使用来自显式耦合粒子计算的光谱计算的聚集谱来测试可用于再现观察到的光谱变化的EMT,可以通过与显式耦合粒子计算的光谱进行比较,找到良好的一致性。在离散偶极子计算中使用EMT介质功能,以计算不适合分析溶液的各种骨料形状的消光光谱,并且检查光谱对聚集形状的敏感性。我们发现光谱仅对聚集形状弱敏感,并且结论是,当计算与实验相比的DNA连接的聚集体的消光时,可以假设球形形状。

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