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Multilayered core-satellite nanoassemblies with fine-tunable broadband plasmon resonances

机译:多层core-satellite nanoassemblies与fine-tunable宽带等离子体共振

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We report on a robust nanotemplating approach to synthesize plasmonic multilayered core-satellite (MCS) nanoassemblies. Templated with gold nanorods, ultrathin Au/Ag alloy cages and satellite gold nanoparticles can be constructed sequentially by galvanic replacement reactions and electrostatic self-assembly, respectively, forming structurally well-defined MCS. The MCS nanoassemblies exhibit strong broadband plasmon resonances from similar to 440 to similar to 1100 nm, and their resonant features can be fine-tuned by adjusting the size and number density of satellite nanoparticles and by adjusting the thickness of the silica spacer between cage and satellite particles. Such fine-engineered MCS nanoassemblies enable precise programming of the strength and distribution of "hot spots" to maximize the overall enhancement of surface enhanced Raman scattering.
机译:我们报告一个健壮的nanotemplating方法综合电浆多层core-satellite(MCS) nanoassemblies。纳米超薄Au / Ag)合金笼子卫星金纳米粒子可以被构造按顺序由电置换反应分别和静电自组装形成结构定义良好的MCS。nanoassemblies表现出强烈的宽带等离子体从1100年类似于440年类似的共振纳米,可以调整他们的共振特性通过调整密度的大小和数目卫星纳米粒子,通过调整厚度的二氧化硅凯奇和之间的间隔卫星粒子。nanoassemblies使精确的编程强度和分布的“热点”最大化的整体增强表面增强的拉曼散射。

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