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Ultra-small v-shaped gold split ring resonators for biosensing using fundamental magnetic resonance in the visible spectrum

机译:超小V形金拆强环谐振器,用于在可见光谱中使用基本磁共振的生物传感

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摘要

Strong light localization within metal nanostructures occurs by collective oscillations of plasmons in the form of electric and magnetic resonances. This so-called localized surface plasmon resonance (LSPR) has gained much interest in the development of low-cost sensing platforms in the visible spectrum. However, demonstrations of LSPR-based sensing are mostly limited to electric resonances due to the technological limitations for achieving magnetic resonances in the visible spectrum. In this work, we report the first demonstration of LSPR sensing based on fundamental magnetic resonance in the visible spectrum using ultrasmall gold v-shaped split ring resonators. Specifically, we show the ability for detecting adsorption of bovine serum albumin and cytochrome c biomolecules at monolayer levels, and the selective binding of protein A/G to immunoglobulin G.
机译:金属纳米结构内的强光定位通过电和磁共振形式的等离子体的集体振动而发生。 这种所谓的局部表面等离子体谐振(LSPR)对可见光谱中的低成本感应平台的开发产生了很多兴趣。 然而,基于LSP的感测的示范主要限于电谐振,这是在可见光谱中实现磁共振的技术限制。 在这项工作中,我们通过超大金V形分流环谐振器报告了基于可见光谱中的基本磁共振的LSPR感测的第一次演示。 具体而言,我们展示了在单层水平下检测牛血清白蛋白和细胞色素C生物分子的吸附能力,以及蛋白A / g对免疫球蛋白G的选择性结合。

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