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Bimetallic-based SPR sensor for cancerous cell detection employing SnSe allotrope and tungsten disulfide

Publication Type : Journal Article

Publisher : Elsevier BV

Source : Hybrid Advances

Url : https://doi.org/10.1016/j.hybadv.2022.100005

Keywords : Biosensor, Cancer, Sensitivity, Kretschmann configuration, Surface plasmon resonance, Transfer matrix method

Campus : Faridabad

School : School of Artificial Intelligence

Year : 2022

Abstract : This paper presents numerical modeling of surface plasmon resonance (SPR) sensors for cancerous cell detection by employing tin selenide allotrope (SnSe) and tungsten disulfide (WS2). The structure is based on the Kretschmann configuration that is coated with a gold metallic film to excite the surface plasmons. In this study, we have considered different cancerous cells that contain both healthy and affected cells for the detection process. The transfer matrix method is exploited to analyze the performance parameters at a 633 ​nm wavelength. Initially, the thickness of bimetallic layers is optimized by observing the sensor parameters. Furthermore, the numerical analysis is performed and results show that the maximum attained parameters for the proposed sensor are a sensitivity of 236.43deg/RIU, quality factor of 70.3 RIU−1 and detection accuracy of 1.5. Finally, the field distribution of the proposed sensor is executed by using two-dimensional Opti-FDTD software.

Cite this Research Publication : Vasimalla Yesudasu, Lokendra Singh, Himansu Shekhar Pradhan, Roshan Kumar, Pravesh Belwal, Bimetallic-based SPR sensor for cancerous cell detection employing SnSe allotrope and tungsten disulfide, Hybrid Advances, Elsevier BV, 2022, https://doi.org/10.1016/j.hybadv.2022.100005

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