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Charge Transfer at Hybrid Interfaces: Plasmonics of Aromatic Thiol-Capped Gold Nanoparticles

机译:杂化界面上的电荷转移:芳香族硫醇封端的金纳米粒子的等离子体。

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Although gold nanoparticles stabilized by organic thiols are the building blocks in a wide range of applications, the role of the ligands on the plasmon resonance of the metal core has been mostly ignored until now. Herein, a methodology based on the combination of spectroscopic ellipsometry and UV-vis spectroscopy is applied to extract dielectric functions of the different components. It is shown that aromatic thiols allow a significant charge transfer at the hybrid interface with the sand d bands of the gold core that yields "giant" red shifts of the plasmon band, up to 40 nm for spherical particles in the size range of 3-5 nm. These results suggest that hybrid nanoplasmonic devices may be designed through the suitable choice of metal core and organic components for optimized charge exchange.
机译:尽管有机硫醇稳定的金纳米颗粒是广泛应用的基础,但迄今为止,配体在金属核的等离振子共振中的作用一直被忽略。在本文中,基于椭圆偏振光谱法和紫外可见光谱法的组合的方法被应用于提取不同组分的介电功能。结果表明,芳族硫醇可以在杂化界面上与金核的s d波段进行显着的电荷转移,从而产生等离激元带的“巨大”红移,对于尺寸范围为3-的球形颗粒,可达40 nm。 5纳米这些结果表明,可以通过适当选择金属核和有机成分以优化电荷交换来设计混合纳米等离子体激元器件。

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