论文标题

对用石墨烯提高表面等离子体共振传感器的灵敏度的批判性分析

A critical analysis on the sensitivity enhancement of surface plasmon resonance sensors with graphene

论文作者

Almeida, Aline dos S., Bahamon, D. A., Peres, Nuno M. R., de Matos, Christiano J. S.

论文摘要

覆盖金属(等离子)膜的表面等离子体共振传感器中的石墨烯具有许多证明的优势,例如保护膜免受腐蚀/氧化的影响,并促进了为选择性传感的官能团的引入。最近,许多作品声称很少的石墨烯也可以提高传感器的灵敏度。但是,石墨烯被视为各向同性薄膜,其平面外折射率与面内指数相同。在这里,我们批判性地研究了单个和几层石墨烯在表面等离子体共振传感器的灵敏度增强中的作用。石墨烯是通过三种不同的描述在金属膜上引入的:作为原子厚的二维片,作为薄的有效各向同性材料(在三个坐标方向上相同的电导率),而作为非异位层(作为非异位层(垂直方向上的不同电导率)到二维平面)。我们发现,只有对石墨烯的光学建模不正确的各向同性层模型才能提高敏感性,而另一个更准确的模型导致对灵敏度的贡献可忽略不计。

The use of graphene in surface plasmon resonance sensors, covering a metallic (plasmonic) film, has a number of demonstrated advantages, such protecting the film against corrosion/oxidation and facilitating the introduction of functional groups for selective sensing. Recently, a number of works have claimed that few-layer graphene can also increase the sensitivity of the sensor. However, graphene was treated as an isotropic thin film, with an out-of-plane refractive index that is identical to the in-plane index. Here, we critically examine the role of single and few layers of graphene in the sensitivity enhancement of surface plasmon resonance sensors. Graphene is introduced over the metallic film via three different descriptions: as an atomic-thick two-dimensional sheet, as a thin effective isotropic material (same conductivity in the three coordinate directions), and as an non-isotropic layer (different conductivity in the perpendicular direction to the two-dimensional plane). We find that only the isotropic layer model, which is known to be incorrect for the optically modelling of graphene, provides sizeable sensitivity increases, while the other, more accurate, models lead to negligible contribution to the sensitivity.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源