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Controlled assembly of plasmonic colloidal nanoparticle clusters

机译:组装的电浆胶态控制纳米簇

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Coupling of localized surface plasmon resonances results in singular effects at the void space between noble metal nanoparticles. However, implementation of practical applications based on plasmon coupling calls for the high yield production of metal nanoparticle clusters (dimers, trimers, tetramers,...) with small gaps. Therefore, controlled assembly using colloid chemistry methods is an emerging and promising field. We present a brief overview over the controlled assembly of plasmonic nanoparticle clusters by colloid chemistry methods, together with a description of their plasmonic properties and some applications, with an emphasis in sensing through surface-enhanced Raman scattering spectroscopy for bio-detection purposes. We point out the important role of separation methods to obtain colloidal clusters in high yield. A special encouragement to explore assembly of anisotropic building blocks is pursued.
机译:局部表面等离子体共振的耦合结果在孔隙空间奇异的效果贵金属纳米颗粒之间。实现的实际应用等离子体耦合要求高收益生产金属纳米簇(四聚体,二聚体,三聚…)小缺口。因此,控制使用胶体组装化学是一个新兴的和有前途的方法字段。控制电浆纳米粒子的组装集群通过胶体化学方法,在一起与电浆性能的描述和一些应用程序,一个重点通过表面增强拉曼散射传感光谱法用于生物检测。分离方法的重要作用在高收益获得胶体簇。特别鼓励探索的各向异性追求构建块。

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