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All-optical positioning of single and multiple Au nanoparticles on surfaces using optical trapping

机译:使用光阱对单个和多个Au纳米粒子进行全光学定位

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Plasmonic metal nanoparticles have recently generated significant interest in both fundamental and applied nanoscience. An emerging area of interest within plasmonics is the study of optical forces on metal nanoparticles. These forces can be used to manipulate and assemble particles into useful geometries. In this work Au nanoparticles are optically trapped and deposited onto surfaces using both focused beam (gradient) as well as total internal reflection (TIR) based optical trapping. In the case of focused beam trapping, single spherical Au nanoparticles can be rapidly deposited to arbitrary locations on a surface with high spatial precision (~100 nm). By controlling both the particle stability and the surface chemistry, large areas (10's of um2) can be patterned with Au nanoparticles. For TIR-based trapping, dense arrays of high-aspect ratio Au bipyramids with spot sizes ~10 um2 are deposited on surfaces. Au bipyramids are deposited via a plasmon-selective photothermal heating mechanism. Both of these methods are fast (patterning large areas in minutes) and require no lithography or scanning probes.
机译:等离子体金属纳米颗粒最近在基础和应用纳米科学中引起了极大的兴趣。等离激元学中一个令人关注的新兴领域是对金属纳米粒子的光学力的研究。这些力可用于将粒子操纵和组装成有用的几何形状。在这项工作中,金纳米粒子通过聚焦光束(梯度)以及基于全内反射(TIR)的光学捕获而被光学捕获并沉积到表面上。在聚焦束阱的情况下,单个球形Au纳米颗粒可以以高空间精度(〜100 nm)快速沉积到表面上的任意位置。通过控制颗粒稳定性和表面化学性质,可以使用Au纳米颗粒对大面积(um2的10英寸)进行图案化。对于基于TIR的捕获,在表面上沉积点长约10 um2的高长径比金双锥的密集阵列。双锥金通过等离激元选择性光热加热机理沉积。这两种方法都是快速的(几分钟内即可完成大面积的构图),并且不需要光刻或扫描探针。

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