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首页> 外文期刊>Angewandte Chemie >Fourier Transform Surface Plasmon Resonance (FTSPR) with Gyromagnetic Plasmonic Nanorods
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Fourier Transform Surface Plasmon Resonance (FTSPR) with Gyromagnetic Plasmonic Nanorods

机译:傅里叶变换表面等离子体共振(FTSPR)与旋磁等离子体纳米棒

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摘要

An unprecedented active and dynamic sensing platform based on a LSPR configuration that is modulated by using an external magnetic field is reported. Electrochemically synthesized Au/Fe/Au nanorods exhibited plasmonically active behavior through plasmonic coupling, and the middle ferromagnetic Fe block responded to a magnetic impetus, allowing the nanorods to be modulated. The shear force variation induced by the specific binding events between antigens and antibodies on the nanorod surface is used to enhance the sensitivity of detection of antigens in the plasmonics-based sensor application. As a proof-of-concept, influenza A virus (HA1) was used as a target protein. The limit of detection was enhanced by two orders of magnitude compared to that of traditional LSPR sensing.
机译:报告了基于使用外部磁场调制的LSPR配置的前所未有的主动和动态感测平台。 电化学合成的Au / Fe / Au纳米棒通过等离子体耦合表现出相位性活性的行为,并且中间铁磁性Fe块响应于磁力,允许纳米棒调节。 抗原与纳米棒表面上的特异性结合事件诱导的剪切力变化用于增强基于抗原的检测的抗原的敏感性。 作为概念验证,流感病毒(HA1)用作靶蛋白。 与传统LSPR感应相比,检测极限增强了两个数量级。

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