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Facet-dependent optical properties of polyhedral Au-Cu26 core-shell nanocrystals

机译:Facet-dependent多面体的光学特性Au-Cu26核壳纳米晶体

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摘要

We fabricated Au-Cu2O core-shell octahedra, cuboctahedra, and nanocubes having sizes of 90-220 nm using 50 nm octahedral cores. The smaller particle sizes minimize the strong light scattering features from the Cu2O shells and enable the surface plasmon resonance (SPR) absorption band of the gold cores to be clearly identified. Beyond a lower shell thickness limit, the SPR band positions of the gold cores are independent of the shell thickness, but are strongly dependent on the exposed particle surfaces. The plasmonic band red-shifts from Au-Cu2O octahedra to cuboctahedra and nanocubes, and differs by as much as 26 nm between the octahedra and the nanocubes. The same facet-dependent optical effects were observed using larger octahedral gold cores and cubic gold cores. In contrast, simulation spectra show progressively red-shifted SPR band positions with increasing shell thickness. The Cu2O shells are also found to exhibit facet-dependent optical behavior. These nanocrystals can respond to changes in the solvent environment such as solvents with different refractive indices, indicating that the plasmonic field of the gold cores can extend beyond the particle surfaces despite the presence of thick shells Plane-selective spectral responses to low concentrations of surfactants were also recorded.
机译:我们制造Au-Cu2O核壳正八面体,cuboctahedra, nanocubes大小的90 - 220 nm使用50纳米八面体核。小粒径减少强光从Cu2O贝壳和散射特性使表面等离子体共振(SPR)吸收带的金核清楚识别。SPR带金核的位置独立的壳壁厚度,但强烈依赖于接触粒子表面。和多达26海里之间的不同正八面体和nanocubes。facet-dependent光学效果观察使用更大的八面体黄金的核和立方内核。逐渐红移SPR带位置增加壳体厚度。还发现facet-dependent光学的行为。溶剂环境的变化等溶剂与不同的折射率,表明电浆的黄金领域核心可以扩展超出了粒子表面尽管厚壳的存在Plane-selective光谱反应低表面活性剂的浓度也记录下来。

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