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Individual Template-Stripped Conductive Gold Pyramidsfor Tip-Enhanced Dielectrophoresis

机译:单个模板剥离的导电金金字塔尖端增强介电电泳

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摘要

Gradient fields of optical, magnetic, or electrical origin are widely used for the manipulation of micro- and nanoscale objects. Among various device geometries to generate gradient forces, sharp metallic tips are one of the most effective. Surface roughness and asperities present on traditionally produced tips reduce trapping efficiencies and limit plasmonic applications. Template-stripped, noble metal surfaces and structures have sub-nm roughness and can overcome these limits. We have developed a process using a mix of conductive and dielectric epoxies to mount template-stripped gold pyramids on tungsten wires that can be integrated with a movable stage. When coupled with a transparent indium tin oxide (ITO) electrode, the conductive pyramidal tip functions as a movable three-dimensional dielectrophoretic trap which can be used to manipulate submicrometer-scale particles. We experimentally demonstrate the electrically conductive functionality of the pyramidal tip by dielectrophoretic manipulation of fluorescent beads and concentration of single-walled carbon nanotubes,detected with fluorescent microscopy and Raman spectroscopy.
机译:光学,磁场或电学起源的梯度场被广泛用于处理微米级和纳米级的物体。在产生梯度力的各种设备几何形状中,尖锐的金属尖端是最有效的尖端之一。传统生产的针尖上存在的表面粗糙度和凹凸不平会降低捕集效率并限制等离激元应用。模板剥离的贵金属表面和结构具有亚纳米的粗糙度,可以克服这些限制。我们已经开发出一种使用导电和电介质环氧树脂的工艺,将模板剥离的金金字塔安装在可与可移动平台集成的钨丝上。当与透明的铟锡氧化物(ITO)电极耦合时,导电的锥体尖端起可移动的三维介电泳陷阱的作用,可用于操纵亚微米级的颗粒。我们通过荧光珠的单电泳操作和单壁碳纳米管的浓度实验性地证明了金字塔形尖端的导电功能,用荧光显微镜和拉曼光谱检测。

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