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MoS2-Based Highly Sensitive Near-Infrared Surface Plasmon Resonance Refractive Index Sensor
Journal article   Peer reviewed

MoS2-Based Highly Sensitive Near-Infrared Surface Plasmon Resonance Refractive Index Sensor

Yi Xu, Lin Wu and Lay Kee Ang
IEEE journal of selected topics in quantum electronics, Vol.25(2), 4600307
01/03/2019

Abstract

Engineering Engineering, Electrical & Electronic Optics Physical Sciences Physics Physics, Applied Quantum Science & Technology Science & Technology Technology
A surface plasmon resonance refractive index sensor based on MoS2-aluminium structure is designed for high imaging sensitivity and detection accuracy. The proposed sensor exhibits better performance than graphene-based refractive index sensor in the near-infrared regime. Ahigh imaging sensitivity ofmore than 970 RIU-1 is obtained at the wavelength of 1540 nm. The effect of aluminium thickness, number of MoS2 layers, and the analyte refractive index on the sensor performance was investigated. In addition, the sensor performance comparison of MoS2 and other two-dimensional transition metal dichalcogenide materials-based sensors in the near-infrared regime is also presented. The designed MoS2-based surface plasmon resonance refractive index sensor could provide potential applications in chemical and biological sensing.

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