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Enhanced and Selective Photodetection Using Graphene-Stabilized Hybrid Plasmonic Silver Nanoparticles

机译:使用石墨烯稳定的混合等离子银纳米颗粒的增强和选择性光电检测。

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摘要

We report the fabrication and characteristics of a novel graphene-Ag-0 hybrid plasmonic nanostructure-based photodetector exhibiting moderately high responsivity (similar to 28 mA/W) and spectral selectivity (similar to 510 nm) in the visible wavelength. The formation of highly stable Ag-0 nanoparticles with an average size of 40 nm is observed within the graphene layers, resulting in n-type doping of hybrid material. The absorption peak of graphene-Ag-0 hybrid is redshifted to the visible wavelength (similar to 510 nm) from the plasmonic Ag peak (similar to 380 nm) in agreement with the optical simulation results for embedded metal nanoparticles. The study demonstrates the synergistic effect of the graphene-metal nanocomposite, which appears attractive for applications in graphene-based photonic devices.
机译:我们报告的新型石墨烯-Ag-0混合等离子基于纳米结构的光电探测器的制造和特征在可见光波长下表现出中等高的响应度(类似于28 mA / W)和光谱选择性(类似于510 nm)。在石墨烯层内观察到平均尺寸为40 nm的高度稳定的Ag-0纳米颗粒的形成,导致杂化材料的n型掺杂。石墨烯-Ag-0杂化物的吸收峰从等离激元Ag峰(类似于380 nm)红移到可见波长(类似于510 nm),这与嵌入式金属纳米粒子的光学模拟结果一致。该研究证明了石墨烯-金属纳米复合材料的协同效应,这对于基于石墨烯的光子器件中的应用而言似乎很有吸引力。

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