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首页> 外文期刊>Nanoscale >Confined surface plasmon sensors based on strongly coupled disk-in-volcano arrays
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Confined surface plasmon sensors based on strongly coupled disk-in-volcano arrays

机译:在表面等离子体传感器基于强烈耦合disk-in-volcano数组

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摘要

Disk-in-volcano arrays are reported to greatly enhance the sensing performance due to strong coupling in the nanogaps between the nanovolcanos and nanodisks. The designed structure, which is composed of a nanovolcano array film and a disk in each cavity, is fabricated by a simple and efficient colloidal lithography method. By tuning structural parameters, the disk-in-volcano arrays show greatly enhanced resonances in the nanogaps formed by the disks and the inner wall of the volcanos. Therefore they respond to the surrounding environment with a sensitivity as high as 977 nm per RIU and with excellent linear dependence on the refraction index. Moreover, through mastering the fabrication process, biological sensing can be easily confined to the cavities of the nanovolcanos. The local responsivity has the advantages of maximum surface plasmon energy density in the nanogaps, reducing the sensing background and saving expensive reagents. The disk-in-volcano arrays also possess great potential in applications of optical and electrical trapping and single-molecule analysis, because they enable establishment of electric fields across the gaps.
机译:据报道Disk-in-volcano数组提高传感性能强劲nanogaps nanovolcanos之间的耦合和纳米盘。由一系列nanovolcano电影和一个磁盘在每一个腔,是由一个简单的和制作的有效胶体光刻方法。结构参数,disk-in-volcano数组显示极大的增强nanogaps共振由磁盘的内壁火山。周围的环境的敏感性高977 nm / RIU和良好的线性对折射率的依赖。通过掌握制造过程,生物传感可以很容易地局限于nanovolcanos的蛀牙。响应率最大的优势nanogaps表面等离子体的能量密度,减少遥感背景和储蓄昂贵的试剂。在的应用也具有巨大的潜力光学和电子捕获和单分子分析,因为他们支持建立电场的缺口。

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