Silver, Bi2Te3 and Antimonene Based Surface Plasmon Resonance Sensor for Enhancement of Sensitivity

Arun Uniyal, Brajlata Chauhan, A. Pal, Sanjiv Tomar, Priyanka Dobhal Uniyal
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引用次数: 2

Abstract

A biosensor based on the surface plasmon resonance has been theoretically analyzed. The proposed surface plasmon resonance (SPR) sensor consists of a hybrid structure with Ag/Bismuth telluride (Bi2Te3)/Antimonene (An)/Sensing medium layers. BK7 is used as the main coupling prism. The sensor’s sensitivity performance gets enhanced by depositing Bi2Te3 and antimonene layers over the conventional sensor’s configuration. The Ag, Bi2Te3, and antimonene layer optimized thickness were taken as 45 nm, 0.5 nm, and 0.5 nm, respectively. The proposed sensor has been working on attenuated total reflection. The proposed sensor shows the highest sensitivity of 154 degree/RIU, a signal-to-noise ratio of 0.19 degrees-1 with a figure of merit of 29.26 RIU-1. The proposed SPR sensor can be used for bio analyte and biochemical detection.
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基于银、Bi2Te3和锑烯的表面等离子体共振传感器的灵敏度增强
对一种基于表面等离子体共振的生物传感器进行了理论分析。提出的表面等离子体共振(SPR)传感器由银/碲化铋(Bi2Te3)/锑烯(An)/传感介质层的杂化结构组成。采用BK7作为主耦合棱镜。通过在传统传感器结构上沉积Bi2Te3和锑烯层,传感器的灵敏度性能得到了提高。Ag、Bi2Te3和antimonene层的优化厚度分别为45 nm、0.5 nm和0.5 nm。该传感器一直致力于衰减全反射。该传感器的最高灵敏度为154度/RIU,信噪比为0.19度-1,优值为29.26 RIU-1。所提出的SPR传感器可用于生物分析物和生化检测。
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