首页> 外文期刊>RSC Advances >Manipulating the confinement of electromagnetic field in size-specific gold nanoparticles dimers and trimers
【24h】

Manipulating the confinement of electromagnetic field in size-specific gold nanoparticles dimers and trimers

机译:操纵尺寸特异性金纳米颗粒二聚体和三聚体电磁场的限制

获取原文
           

摘要

The intriguing light–matter interactions can be governed by controlling the particle size and shape, electromagnetic interactions and dielectric properties and local environment of the metal nanostructures. Amongst the different approaches that have been engendered to manipulate light at the nanoscale, the self-assembly of metallic nanostructures with controllable interparticle distances and angular orientations, which strongly impact their optical attributes, is one of the viable avenues to exploit their utility in a diverse range of niche applications. The simplest geometrical architectures that enable such modulations are dimers with changeable interparticle distances and trimers with an additional degree of angular orientation to correlate the plasmonic observables with the observed spectral characteristics. Wet chemical approaches have been adopted in this study for the synthesis of size-selective gold nanoparticles, and appropriate organic linkers have judiciously been employed to induce plasmonic interactions amongst the gold nanoparticles in close proximity to each other. The combination of experimental observations and electromagnetic simulations adopted to probe the plasmonic interactions revealed that the electrodynamic coupling effect was very sensitive to particle size, interparticle distances and angular orientations in these simple nanoassemblies. The capability to precisely manipulate the electric field at the junctions between these plasmon-coupled nanoparticles could pave the way for the application of these nanoassemblies in surface-enhanced spectroscopies and sensing applications.
机译:通过控制粒径和形状,电磁相互作用和介电性能以及金属纳米结构的局部环境,可以控制诱人的浅品相互作用。在接受纳米尺度的不同方法中,在纳米级上操纵光,金属纳米结构的自组装具有可控制的颗粒间距和角度取向,它强烈影响其光学属性,是可行的途径之一,以利用它们在多样化中的效用利基应用范围。使这种调制的最简单的几何架构是具有可变的颗粒间距和具有额外程度的角度方向的三聚体的二聚体,以将等离子体可观察结果与观察到的光谱特性相关联。在该研究中采用了湿化学方法,用于合成尺寸选择性金纳米颗粒,并且适当的有机接头具有明显的用来诱导在彼此附近的金纳米颗粒之间的等离子体相互作用。对等离子体相互作用采用的实验观测和电磁模拟的组合揭示了电动耦合效果对这些简单的纳米组织中的粒度,颗粒距离和角度取向非常敏感。精确地操纵这些等离子体偶联纳米颗粒之间的交界处的电场的能力可以在表面增强的光谱和传感应用中铺平这些纳米组织的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号