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首页> 外文期刊>Small >High Figure of Merit (FOM) of Bragg Modes in Au-Coated Nanodisk Arrays for Plasmonic Sensing
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High Figure of Merit (FOM) of Bragg Modes in Au-Coated Nanodisk Arrays for Plasmonic Sensing

机译:AU涂层纳米型阵列施联纳米型阵列的高价(FOM)高峰矩阵

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摘要

Gold-coated nanodisk arrays of nearly micron periodicity are reported that have high figure of merit (FOM) and sensitivity necessary for plasmonic refractometric sensing, with the added benefit of suitability for surface-enhanced Raman scattering (SERS), large-scale microfabrication using standard photolithographic techniques and a simple instrumental setup. Gold nanodisk arrays are covered with a gold layer to excite the Bragg modes (BM), which are the propagative surface plasmons localized by the diffraction from the disk array. This generates surface-guided modes, localized as standing waves, leading to highly confined fields confirmed by a mapping of the SERS intensity and numerical simulations with 3D finite element method. The optimal gold-coated nanodisk arrays are applied for refractometric sensing in transmission spectroscopy with better performance than nanohole arrays and they are integrated to a 96-well plate reader for detection of IgY proteins in the nanometer range in PBS. The potential for sensing in biofluids is assessed with IgG detection in 1:1 diluted urine. The structure exhibits a high FOM of up to 46, exceeding the FOM of structures supporting surface plasmon polaritons and comparable to more complex nanostructures, demonstrating that subwavelength features are not necessary for high-performance plasmonic sensing.
机译:报告了近微米周期性的镀金纳米磁盘阵列具有高度的优点(FOM)和抗议性折射测量感测所需的灵敏度,具有适当的表面增强拉曼散射(SERS),使用标准的大规模微制造的额外效益。光刻技术和简单的仪器设置。金纳多克阵列用金层覆盖,以激发布拉格模式(BM),这是由磁盘阵列的衍射定位的传播表面等离子体。这产生了局部导向的模式,局部地是驻波,导致高度限制的字段,通过SER强度和3D有限元方法的数值模拟来证实。最佳镀金纳米磁盘阵列施加用于透射光谱法的折射测量感测,具有比纳米阵列更好的性能,它们集成到96孔板读取器,用于检测PBS中纳米范围内的IGY蛋白。在1:1中的IgG检测中评估生物流体中的感测的可能性。该结构表现出高达46的高FOM,超过支撑表面等离子体极性恒星的结构和与更复杂的纳米结构相当的结构,证明了高性能等离子体感测不是必需的亚波长特征。

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  • 来源
    《Small 》 |2017年第38期| 共10页
  • 作者单位

    Univ Montreal Dept Chim CP 6128 Succ Ctr Ville Montreal PQ H3C 3J7 Canada;

    Univ Montreal Dept Chim CP 6128 Succ Ctr Ville Montreal PQ H3C 3J7 Canada;

    Univ Strathclyde Technol Innovat Ctr Dept Pure &

    Appl Chem Bionanotechnol 99 George St Glasgow G1 1RD Lanark Scotland;

    Dalian Univ Technol Coll Phys &

    Optoelect Engn Dalian 116024 Peoples R China;

    Univ Paris Sud CNRS Grad Sch Lab Charles Fabry Inst Opt 2 Ave Augustin Fresnel F-91127 Palaiseau France;

    Univ Montreal Dept Chim CP 6128 Succ Ctr Ville Montreal PQ H3C 3J7 Canada;

    Univ Strathclyde Technol Innovat Ctr Dept Pure &

    Appl Chem Bionanotechnol 99 George St Glasgow G1 1RD Lanark Scotland;

    Dalian Univ Technol Coll Phys &

    Optoelect Engn Dalian 116024 Peoples R China;

    Univ Paris Sud CNRS Grad Sch Lab Charles Fabry Inst Opt 2 Ave Augustin Fresnel F-91127 Palaiseau France;

    Univ Montreal Dept Chim CP 6128 Succ Ctr Ville Montreal PQ H3C 3J7 Canada;

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  • 正文语种 eng
  • 中图分类 特种结构材料 ;
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