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用于等离子体和纳米光子学的纳米贴片天线的胶体合成

Colloidal Synthesis of Nanopatch Antennas for Applications in Plasmonics and Nanophotonics.

作者信息

Hoang Thang B, Huang Jiani, Mikkelsen Maiken H

机构信息

Department of Physics, Duke University; Center for Metamaterials and Integrated Plasmonics, Duke University.

Department of Physics, Duke University; Center for Metamaterials and Integrated Plasmonics, Duke University; Department of Electrical and Computer Engineering, Duke University;

出版信息

J Vis Exp. 2016 May 28(111):53876. doi: 10.3791/53876.

Abstract

We present a method for colloidal synthesis of silver nanocubes and the use of these in combination with a smooth gold film, to fabricate plasmonic nanoscale patch antennas. This includes a detailed procedure for the fabrication of thin films with a well-controlled thickness over macroscopic areas using layer-by-layer deposition of polyelectrolyte polymers, namely poly(allylamine) hydrochloride (PAH) and polystyrene sulfonate (PSS). These polyelectrolyte spacer layers serve as a dielectric gap in between silver nanocubes and a gold film. By controlling the size of the nanocubes or the gap thickness, the plasmon resonance can be tuned from about 500 nm to 700 nm. Next, we demonstrate how to incorporate organic sulfo-cyanine5 carboxylic acid (Cy5) dye molecules into the dielectric polymer gap region of the nanopatch antennas. Finally, we show greatly enhanced fluorescence of the Cy5 dyes by spectrally matching the plasmon resonance with the excitation energy and the Cy5 absorption peak. The method presented here enables the fabrication of plasmonic nanopatch antennas with well-controlled dimensions utilizing colloidal synthesis and a layer-by-layer dip-coating process with the potential for low cost and large-scale production. These nanopatch antennas hold great promise for practical applications, for example in sensing, ultrafast optoelectronic devices and for high-efficiency photodetectors.

摘要

我们展示了一种用于胶体合成银纳米立方体的方法,以及将这些银纳米立方体与光滑金膜结合使用来制造等离子体纳米级贴片天线的方法。这包括使用聚电解质聚合物(即聚(烯丙胺)盐酸盐(PAH)和聚苯乙烯磺酸盐(PSS))的逐层沉积在宏观区域上制造具有精确控制厚度的薄膜的详细步骤。这些聚电解质间隔层在银纳米立方体和金膜之间充当介电间隙。通过控制纳米立方体的尺寸或间隙厚度,等离子体共振可以从约500纳米调谐到700纳米。接下来,我们演示如何将有机磺基 - 花青素5羧酸(Cy5)染料分子纳入纳米贴片天线的介电聚合物间隙区域。最后,通过使等离子体共振与激发能量和Cy5吸收峰进行光谱匹配,我们展示了Cy5染料荧光的大幅增强。这里介绍的方法能够利用胶体合成和逐层浸涂工艺制造尺寸精确控制的等离子体纳米贴片天线,具有低成本和大规模生产的潜力。这些纳米贴片天线在实际应用中具有广阔前景,例如在传感、超快光电器件和高效光电探测器方面。

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