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Using the nanoimprint-in-metal method to prepare corrugated metal structures for plasmonic biosensors through both surface plasmon resonance and index-matching effects

机译:使用纳米视网膜金属法制备瓦楞金属结构通过表面等离子体共振和指数匹配效应来制备等离子体生物传感器的瓦楞金属结构

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In this study, we prepared metallic corrugated structures for use as ultra-sensitive plasmonic sensors. Relying on the direct nanoimprint-in-metal method, fabrication of this metallic corrugated structure was readily achieved in a single step. The metallic corrugated structures were capable of sensing both surface plasmon resonance (SPR) wavelengths and index-matching effects. The corrugated Au films exhibited ultrahigh sensitivity (ca. 800 nm/RIU), comparable with or even higher than those of other reported SPR-based sensors. Moreover, here we first demonstrate the experimental realization of quantified refractometric sensing by index-matching effect. Because of the unique index-matching effect, refractometric sensing could also be performed by measuring the transmission intensity of the Au/substrate SPR mode--conveniently, without a spectrometer. In the last, we demonstrated the corrugated Au film was capable of sensing trace amount of cysteine, revealing the ability of the structure to be a highly sensitive biosensor.
机译:在这项研究中,我们准备用作超灵敏传感器等离子激元的金属波纹结构。依靠直接纳米压印在金属的方法,该金属波纹结构的制造在一个单一的步骤中容易地实现。金属波纹结构是能够感测两个表面等离子体共振(SPR)的波长和折射率匹配效应。波纹的Au薄膜具有超高灵敏度(约800纳米/ RIU),具有相当的或比其它报道的基于SPR的传感器就更高了。此外,在这里我们首先证明由折射率匹配效果量化折光检测的实验实现。便利地,没有一个分光计 - 由于独特的折射率匹配效应的,折射感测也可以通过测量的Au /基板SPR模式的透射强度进行。在最后,我们证明波纹Au膜是能够感测半胱氨酸的微量,揭示了结构的成为高灵敏度的生物传感器的能力。

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