Influence of Stack Hybrid Configuration of MoS2 and Graphene on the Performance of Surface Plasmon Resonance Biosensor

IF 0.7 Q4 COMPUTER SCIENCE, INFORMATION SYSTEMS Jordan Journal of Electrical Engineering Pub Date : 2022-01-01 DOI:10.5455/jjee.204-1658669063
A. Davami, M. Abadi
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Abstract

This paper investigates the influence of various configurations and flakes of: i) graphene, ii) graphene/MoS2/graphene and iii) MoS2/graphene/MoS2 over a thin layer of gold on the performance of a surface plasmon resonance (SPR) biosensor. The reflectance curves of the proposed SPR biosensor are obtained, analyzed and compared for different combinations and thicknesses of the biosensors’ layers in refractive indices (RI) of 1 and 1.02, resembling an air and a bacterial medium, respectively. An in-depth analysis based on finite difference time domain method is performed to describe the sensor response considering sensitivity, full width at half maximum and minimum reflectance. The obtained results show that the sensitivity of the biosensor with a 50 nm Au and a 5 nm TiO2 (as the adhesive layer between the Au- layer and the prism) is equal to 61°/RIU. In order to increase further the sensitivity, different stacks and thicknesses of MoS2/graphene/MoS2 and graphene/MoS2/graphene configurations on the Au layer are added. The achieved outcomes reveal that the sensitivity is improved for a monolayer of MoS2 (1L_MoS2) sandwiched between double layers of graphene (2L_G) on 50 nm Au and 5 nm TiO2 (1L_MoS2/2L_G/1L_MoS2/50nmAu/5nmTiO2/Prism-BK7). This combination yields a sensitivity of 71.5 °/RIU for RI changes in the sensing medium (Δn) of 0.02 with a great detection accuracy of 0.33. We hope that – based on the outcomes of this investigation - the proposed structures can open new windows to improve the SPR biosensor detection of biological species.
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二硫化钼与石墨烯叠层杂化结构对表面等离子体共振生物传感器性能的影响
本文研究了不同结构和薄片:1)石墨烯,2)石墨烯/MoS2/石墨烯和3)MoS2/石墨烯/MoS2在薄层金上对表面等离子体共振(SPR)生物传感器性能的影响。在折射率(RI)为1和1.02时,分别模拟空气和细菌培养基,获得了SPR生物传感器的不同组合和不同厚度下的反射率曲线,并对其进行了分析和比较。基于时域有限差分法深入分析了考虑灵敏度、半最大全宽和最小反射率的传感器响应。结果表明,采用50 nm Au和5 nm TiO2(作为Au层与棱镜之间的粘附层)制备的生物传感器的灵敏度为61°/RIU。为了进一步提高灵敏度,在Au层上添加了不同堆叠和厚度的MoS2/石墨烯/MoS2和石墨烯/MoS2/石墨烯构型。结果表明,将单层MoS2 (1L_MoS2)夹在50nmAu和5nmTiO2的双层石墨烯(2L_G)之间(1L_MoS2/2L_G/1L_MoS2/ 50nmau /5nmTiO2/Prism-BK7)的灵敏度得到了提高。这种组合对感测介质(Δn)中RI变化的灵敏度为71.5°/RIU,为0.02,检测精度为0.33。我们希望基于本研究的结果,所提出的结构可以为改进生物物种的SPR生物传感器检测打开新的窗口。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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0.20
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14.30%
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