Yue Chong, Lang Yaopu, Zhou Xinglin, Liu Qinggang
Appl Opt. 2019 Dec 1;58(34):9411-9420. doi: 10.1364/AO.58.009411.
A novel surface plasmon resonance (SPR) biosensor based on Ag-Au bimetallic films with a hybrid structure of blue phosphorene (BlueP)/transition metal dichalcogenides (TMDCs) and graphene is presented. In order to improve the sensitivity, the thickness of silver and gold films is optimized to achieve minimum reflectivity and an adequate level of sensitivity; further, sensitivity for the monolayer / and graphene structure is enhanced by 19.73%, with respect to a traditional sensor. Besides, the effect of layers of different Blue/TMDCs heterostructures to the sensitivity of the SPR biosensor is investigated, and the highest sensitivity with 335.4°/RIU for the bilayer / is obtained. Furthermore, distributions of the electric field and the changes of resonance angle to the refractive index of the sensing medium and prism in the visible regime are illustrated at optimal configuration. In virtue of highly sensitive characteristics, the proposed sensor structure will be a much better option to be employed for further biological detection.
提出了一种基于具有蓝色磷烯(BlueP)/过渡金属二硫属化物(TMDCs)和石墨烯混合结构的Ag-Au双金属膜的新型表面等离子体共振(SPR)生物传感器。为了提高灵敏度,对银膜和金膜的厚度进行了优化,以实现最小反射率和足够的灵敏度水平;此外,相对于传统传感器,单层/石墨烯结构的灵敏度提高了19.73%。此外,研究了不同Blue/TMDCs异质结构层对SPR生物传感器灵敏度的影响,获得了双层/结构的最高灵敏度,为335.4°/RIU。此外,在最佳配置下,展示了可见光谱范围内电场分布以及共振角随传感介质和棱镜折射率的变化。凭借其高灵敏度特性,所提出的传感器结构将是用于进一步生物检测的更好选择。