研究目的
To investigate the design considerations of a surface plasmon resonance (SPR) based tapered fiber optic sensor with graphene-MoS2 overlayers for enhanced sensitivity and detection accuracy in bio-sensing applications.
研究成果
The proposed SPR based tapered fiber optic sensor with graphene-MoS2 overlayers shows enhanced sensitivity and detection accuracy compared to conventional sensors. The exponential-linear taper profile provides the highest sensitivity, while the quadratic profile offers the best detection accuracy. The study suggests that the sensor design is promising for bio-sensing applications, with potential for further optimization by adjusting the number of graphene and MoS2 layers.
研究不足
The study is theoretical and does not include experimental validation. The practical implementation may face challenges in fabricating the precise taper profiles and maintaining the uniformity of the graphene and MoS2 monolayers.
1:Experimental Design and Method Selection:
The study is based on a theoretical model using a five-layer matrix model to analyze the SPR based tapered fiber optic sensor. The sensor design includes a tapered fiber core coated with a thin film of platinum followed by graphene and MoS2 monolayers.
2:Sample Selection and Data Sources:
A step index multimode fiber with a numerical aperture of 0.22 and core diameter 600μm is used. The middle portion of the fiber is tapered using the Flame Brush method.
3:22 and core diameter 600μm is used. The middle portion of the fiber is tapered using the Flame Brush method.
List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: The materials include platinum thin film, graphene and MoS2 monolayers. The equipment involves a broadband light source and a spectrometer for recording transmission spectra.
4:Experimental Procedures and Operational Workflow:
The theoretical modeling involves calculating the transmitted power and analyzing the SPR curves for different taper profiles and ratios. The performance parameters are evaluated in terms of sensitivity and detection accuracy.
5:Data Analysis Methods:
The sensitivity is calculated as the ratio of shift in resonance wavelength to the change in refractive index of the sensing medium. Detection accuracy is determined based on the width of the SPR curve.
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