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Decorated Core-Shell Architectures: Influence of the Dimensional Properties on Hybrid Resonances

机译:装饰核心壳结构:尺寸特性对混合共振的影响

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Emerging nanoplasmonics utilizing asymmetric core-shell architectures present opportunities to precisely control the plasmon position and signal amplification within a single particle. In particular, asymmetric gold nanorods, assembled into a "matryoshka" structure (gold nanorod core, silica spacer shell, and outer gold shell) have the unique ability to enhance and precisely manipulate the plasmonic signature when compared to single gold nanorods via the generation of hybridized plasmonic modes. Currently, the fundamental understanding of the impact of the gold nanorod matryoshka dimensional parameters on the subsequent resonance behavior is incomplete. In this work, we elucidate the structural-hybridized resonance relationship of gold nanorod nanomatryoshka designs by experimentally varying the key geometrical properties; including silica spacer thickness, gold nanorod core size, and gold shell thickness/continuity.
机译:利用非对称芯壳架构的新出现的纳米烷基化能够精确地控制单个粒子内的等离子体位置和信号放大的机会。 特别地,组装成“Matryoshka”结构(金纳米棒芯,二氧化硅间隔壳和外金壳)的不对称金纳米棒具有独特的增强能力,并通过产生的单金纳米棒相比,可以增强和精确地操纵等离子体签名 杂交的等离子体模式。 目前,对黄金纳米棒Matryoshka尺寸参数对随后的共振行为的影响的根本理解是不完整的。 在这项工作中,我们通过通过实验改变关键几何特性来阐明金纳米棒纳米甘露出术的结构杂交共振关系; 包括二氧化硅间隔厚度,金纳米芯芯尺寸和金壳厚度/连续性。

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