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Birth of the localized surface plasmon resonance in monolayer-protected gold nanoclusters

机译:单层保护的金纳米团簇中局部表面等离振子共振的产生

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Gold nanoclusters protected by a thiolate monolayer (MPC) are widely studied for their potential applications in site-specific bioconjugate labeling, sensing, drug delivery, and molecular electronics. Several MPCs with 1-2 nm metal cores are currently known to have a well-defined molecular structure, and they serve as an important link between molecularly dispersed gold and colloidal gold to understand the size-dependent electronic and optical properties. Here, we show by using an ab initio method together with atomistic models for experimentally observed thiolate-stabilized gold clusters how collective electronic excitations change when the gold core of the MPC grows from 1.5 to 2.0 nm. A strong localized surface plasmon resonance (LSPR) develops at 540 nm (2.3 eV) in a cluster with a 2.0 nm metal core. The protecting molecular layer enhances the LSPR, while in a smaller cluster with 1.5 nm gold core, the plasmon-like resonance at 540 nm is confined in the metal core by the molecular layer. Our results demonstrate a threshold size for the emergence of LSPR in these systems and help to develop understanding of the effect of the molecular overlayer on plasmonic properties of MPCs enabling engineering of their properties for plasmonic applications.
机译:受硫醇盐单分子膜(MPC)保护的金纳米簇因其在特定位置的生物共轭物标记,传感,药物递送和分子电子学中的潜在应用而被广泛研究。目前已知几种具有1-2 nm金属核的MPC具有明确的分子结构,它们充当分子分散的金和胶体金之间的重要链接,以了解与尺寸有关的电子和光学性质。在这里,我们通过使用从头算方法和原子模型对实验观察到的硫醇盐稳定的金簇进行展示,当MPC的金核从1.5 nm增长到2.0 nm时,集体电子激发是如何变化的。在具有2.0 nm金属核的簇中,在540 nm(2.3 eV)处会产生很强的局部表面等离子体共振(LSPR)。保护分子层增强了LSPR,而在具有1.5 nm金核的较小簇中,分子层将540 nm处的等离激元样共振限制在金属核中。我们的结果证明了在这些系统中LSPR出现的阈值大小,并有助于加深对分子覆盖层对MPC等离子体特性的影响的理解,从而能够对其在等离子体方面的应用进行工程设计。

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