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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Strong Fano Resonance Excited in an Array of Nanoparticle-in-Ring Nanostructures for Dual Plasmonic Sensor Applications
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Strong Fano Resonance Excited in an Array of Nanoparticle-in-Ring Nanostructures for Dual Plasmonic Sensor Applications

机译:在双重等离子体传感器应用中,在纳米粒子内纳米结构阵列中激发强大的Fano共振

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摘要

A large-area (over 1 cm(2)) nanoparticle-in-ring array (NPIRA) with strong Fano resonance is fabricated by a low-cost shadow sphere lithography (SSL) method. Controlled narrow nanogaps of 8-20 nm are formed between the nanoparticles (NPs) and rings. Quadrupole modes are excited in the nanogaps and interact with the dipole mode of the NPs and ring, resulting in two Fano resonances. The two Fano resonances are in the visible and near-infrared region, respectively, and show a maximum refractive index sensitivity of 425 nm/RIU and a figure of merit of 4.7-7.1 RIU-1. In addition, the NPIRAs show enhanced Raman intensity due to the strong electric fields confined in the nanogaps. The structure has great potential for the dual plasmonic sensor applications, i.e., surface-enhanced Raman scattering and refractive index sensing, and provides a robust sensing performance for each.
机译:具有强大的FANO谐振的大面积(超过1cm(2))纳米粒子环阵列(NPIRA)由低成本的暗影球光刻(SSL)方法制造。 在纳米颗粒(NPS)和环之间形成8-20nm的受控窄纳米体。 在Nanogaps中激发了四极杆模式并与NPS和环的偶极模式相互作用,导致两个FANO共振。 两个FANO共振分别位于可见光和近红外区域,显示出425nm / RIU的最大折射率敏感性和4.7-7.1 RIU-1的优点。 此外,NPIRAS由于纳米内部限制的强电场而显示出增强的拉曼强度。 该结构具有适用于双重等离子体传感器应用的潜力,即表面增强拉曼散射和折射率感测,并为每个提供稳健的感测性能。

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