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纳米晶体单层的等离子体敏化感光膜。

Plasmonic light-sensitive skins of nanocrystal monolayers.

机构信息

UNAM-Institute of Materials Science and Nanotechnology, Department of Electrical and Electronics Engineering and Department of Physics, Bilkent University, Ankara, Turkey.

出版信息

Nanotechnology. 2013 Apr 19;24(15):155201. doi: 10.1088/0957-4484/24/15/155201. Epub 2013 Mar 22.

Abstract

We report plasmonically coupled light-sensitive skins of nanocrystal monolayers that exhibit sensitivity enhancement and spectral range extension with plasmonic nanostructures embedded in their photosensitive nanocrystal platforms. The deposited plasmonic silver nanoparticles of the device increase the optical absorption of a CdTe nanocrystal monolayer incorporated in the device. Controlled separation of these metallic nanoparticles in the vicinity of semiconductor nanocrystals enables optimization of the photovoltage buildup in the proposed nanostructure platform. The enhancement factor was found to depend on the excitation wavelength. We observed broadband sensitivity improvement (across 400-650 nm), with a 2.6-fold enhancement factor around the localized plasmon resonance peak. The simulation results were found to agree well with the experimental data. Such plasmonically enhanced nanocrystal skins hold great promise for large-area UV/visible sensing applications.

摘要

我们报告了等离子体耦合的光敏感皮肤的纳米晶体单层,表现出灵敏度增强和光谱范围扩展与等离子体纳米结构嵌入其光敏纳米晶体平台。该设备中的沉积的等离子体银纳米粒子增加了设备中包含的 CdTe 纳米晶体单层的光吸收。在半导体纳米晶体附近控制这些金属纳米粒子的分离,使在提出的纳米结构平台中光电势的建立得到优化。发现增强因子取决于激发波长。我们观察到宽带灵敏度提高(跨越 400-650nm),在局部等离子体共振峰周围有 2.6 倍的增强因子。模拟结果与实验数据吻合得很好。这种等离子体增强的纳米晶体皮肤在大面积紫外/可见传感应用中具有广阔的应用前景。

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