Issue 45, 2022, Issue in Progress

Hybrid Tamm plasmon resonance excitation towards a simple and efficient biomedical detector of NaI solution

Abstract

This work presents a theoretical verification for the detection of Sodium iodide (NaI) solution with different concentrations in the vicinity of Tamm plasmon (TP) resonance. The proposed sensing tool is constituted of {prism/Ag/cavity/(GaN/CaF2)15/air}. The essential foundation of this study is based on the displacement of the TP resonance by varying the concentration of an aqueous solution of sodium iodide (NaI) that fills the cavity layer. The resonant TP dip is shifted downwards the shorter wavelengths with the increment of the Ag layer thickness. Nevertheless, the resonant TP dip is shifted upwards to longer wavelengths with the increment of NaI refractive index/concentration. Also, the sensitivity of the sensing tool decreases with the increment of the NaI refractive index. However, the minimum result is not less than the value of 9913 nm RIU−1 for a concentration of 25%. Finally, the performance of our sensor in the form of the quality factor, detection limit, and figure of merit showed significant improvements in designing a high-performance liquid and biosensor.

Graphical abstract: Hybrid Tamm plasmon resonance excitation towards a simple and efficient biomedical detector of NaI solution

Article information

Article type
Paper
Submitted
06 Jul 2022
Accepted
30 Sep 2022
First published
11 Oct 2022
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2022,12, 28985-28996

Hybrid Tamm plasmon resonance excitation towards a simple and efficient biomedical detector of NaI solution

T. A. Taha, H. A. Elsayed, A. Mehaney, A. Hajjiah and A. M. Ahmed, RSC Adv., 2022, 12, 28985 DOI: 10.1039/D2RA04184G

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