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A combined size sorting strategy for monodisperse plasmonic nanostructures

机译:单分散的大小排序策略相结合电浆纳米结构

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The fabrication of highly monodisperse silica coated Au NPs by the microemulsion approach and the selection of the nanostructure morphology have been described. Several experimental conditions, synthetic parameters and post-preparative strategies such as reaction time, precursor concentration, size selection techniques and NP surface treatments have been suitably investigated in order to fabricate Au and Au@SiO2 NPs with peculiar and tuneable plasmonic properties that strongly depend on the specific size distribution and nanostructure morphology. In particular, size selected precipitation of oleylamine-capped Au NPs by antisolvent titration has successfully offered a strategy to discriminate and collect monodisperse fractions with different average size and narrow size distribution. Moreover, for the first time, a deep insight into the microemulsion mechanism for the silica shell growth has been provided, highlighting the critical role played by the density of oleylamine at the Au NP surface. Specifically the capping agent has been demonstrated to strongly determine the multiplicity of the core in the final Au@SiO2 nanostructures. Density gradient centrifugation has been finally performed to sort the achieved Au@SiO2 NPs with different morphologies, which was ultimately able to recover a significant fraction formed of two Au NPs in one silica shell. A systematic characterization of the Au and Au@SiO2 NPs has been carried out by complementary morphological and spectroscopic techniques. These deeply investigated materials, with tuneable plasmonic properties, have been proposed as versatile building blocks useful for the design and fabrication of plasmonic and photonic structures as well as metamaterials for device applications.
机译:高度单分散二氧化硅的制备微乳液方法和涂层盟NPs纳米结构形态的选择已被描述。条件下,合成参数和post-preparative策略等反应时间、前体浓度大小的选择技术和NP表面处理适当的调查以制造盟和Au@SiO2 NPs特有的和可协调的电浆性质强烈依赖于特定的大小分布和纳米结构形态。降水oleylamine-capped盟NPs的antisolvent滴定法成功地提供了一个歧视和收集单分散的策略分数与不同的平均大小和狭窄的大小分布。微乳液的,深层次的洞察机制硅壳的增长提供了,强调所发挥的关键作用油胺的密度非盟NP表面。特别限制代理了强烈的确定最后Au@SiO2多样性的核心纳米结构。最后进行排序实现Au@SiO2 NPs与不同形态,最终能够恢复一个重要吗分数两个盟NPs在一个硅的形成壳。和Au@SiO2 NPs已经进行的互补的形态和光谱技术。可协调的电浆性能,有用的建议作为通用的构建块设计和制造的电浆光子结构以及超材料设备应用程序。

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