研究目的
Detection of hemoglobin (Hb) concentration in human blood via refractive index measurement using a plasmonic sensor based on aluminum oxide (Al2O3) grating with Si and Ag layers in the optical communication band (1400-1550 nm).
研究成果
The proposed Al2O3 grating-based plasmonic sensor with optimized design parameters offers significantly better sensitivity, detection limit, FOM, and m-FOM* compared to existing grating-based SPR sensors. The study provides a comprehensive analysis of the sensor's performance and suggests practical fabrication tolerances for future realization.
研究不足
The study is based on simulations, and practical realization may face challenges such as fabrication tolerances and maintaining the exact design parameters. The sensor's performance may vary with the attachment of molecules on the analyte surface.
1:Experimental Design and Method Selection
The study employs rigorous coupled wave analysis (RCWA) for simulations to design and analyze the plasmonic sensor. The sensor's performance is evaluated based on sensitivity, figure of merit (FOM), spectral FOM (FOM*), and quality factor (QF).
2:Sample Selection and Data Sources
Hemoglobin (Hb) in human blood with different concentrations is used as the analyte. The refractive index values for materials are adapted from various references.
3:List of Experimental Equipment and Materials
The sensor design includes a CaF2 substrate, a 2 nm thick titanium (Ti) film, silver (Ag) layer, silicon (Si) layer, and Al2O3 grating. The refractive index values for these materials are specified.
4:Experimental Procedures and Operational Workflow
The simulation involves varying grating variables (height, width, periodicity) and the thicknesses of Si and Ag layers to analyze their effect on the sensor's performance. The SPR curves are simulated for different Hb concentrations.
5:Data Analysis Methods
The analysis includes calculating sensitivity, FOM, FOM*, and QF. The effect of design parameters on these performance indicators is studied.
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