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Plasmon Coupled Nanophotonic Devices Based on Encapsulated 2-D Silver Nanoparticle Arrays

机译:基于封装的二维银纳米粒子阵列的等离子体耦合纳米光子器件

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Ordered and encapsulated 2-D arrays of silver nanoparticles have been fabricated for applications as reliable, durable, reproducible, and high sensitivity sensors and photoconductors based on plasmon resonance enhanced local electromagnetic fields. Silver nanopartilces are encapsulated by anodic aluminum oxide or atomically thin graphene to isolate silver from adverse environmental effects. In this paper, fabrication process of the sensor and its applications to SERS detection of adenine molecures and wavelength dependent photoconductive sensing of light are presented. This structure combines excellent intrinsic performance of silver plasmon resonance and the effective isolation of silver from harsh environments by encapsulation to achieve high performance and long-term reliability.
机译:银纳米颗粒的有序和封装二维阵列已被制造出来,用于基于等离振子共振增强局部电磁场的可靠,耐用,可重现和高灵敏度的传感器和光电导体。银纳米粒子被阳极氧化铝或原子薄的石墨烯封装,以将银与不利的环境影响隔离开来。本文介绍了传感器的制造工艺及其在腺嘌呤分子SERS检测和光的波长依赖性光电导检测中的应用。这种结构将银等离子体激元共振的出色内在性能与通过封装实现的银与恶劣环境的有效隔离相结合,从而实现了高性能和长期可靠性。

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