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Gap-mode excitation, manipulation, and refractive-index sensing application by gold nanocube arrays

机译:Gap-mode励磁、操纵和由黄金折射率传感应用nanocube数组

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摘要

The challenges in fabricating two-dimensional metallic nanostructures over large areas, which normally involve expensive and time-consuming nanofabrication techniques, have severely limited the exploration of the related applications based on plasmon-induced effects. Here, we cost-efficiently prepared large-area Au nanocube arrays (NCAs) using only the electrostatic forces between colloidal Au nanocubes and polyelectrolyte layers. This method provides a flexible way for obtaining controlled Au NCAs with various fill fractions and single-cube sizes. When the Au NCAs were arranged to be coupled with a continuous Au film, the plasmonic gap mode could be excited and manipulated, leading to significant and tunable light absorbance from the visible to the near-infrared parts of the spectrum. Besides, the as-prepared Au NCAs were used to construct a prototype refractive-index (RI) sensor, which exhibited excellent stability and sensitivity over 560 nm per RI unit.
机译:在制作二维的挑战在大面积的金属纳米结构,通常涉及昂贵和耗时纳米加工技术,已严重限制探索相关的应用程序的基础在plasmon-induced效果。有成本效益的大面积盟nanocube做好准备数组(nca)只使用静电部队和胶体盟nanocubes之间聚电解质层。灵活的方式获取非盟nca控制各种填充分数和single-cube大小。加上一个连续的非盟电影,电浆差距可以兴奋和操作模式,导致显著和可调光可见近红外吸光度部分的光谱。非盟nca被用来构建一个原型展出的折射率(RI)传感器出色的稳定性和灵敏度超过560海里重组股。

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