Affiliation:
1. Key Laboratory of Optoelectronics Technology Ministry of Education Beijing University of Technology Beijing 100124 China
2. School of Opto‐electronic Engineering Zaozhuang University Zaozhuang 277160 China
3. School of Information Science and Engineering Zaozhuang University Zaozhuang 277160 China
4. school of Electrical and Information Engineering Anhui University of Science and Technology Huainan Anhui 232001 China
Abstract
AbstractThe concept of a quasi‐bound state in a continuum (QBIC) has garnered significant attention in various fields such as sensing, communication, and optical switching. Within metasurfaces, QBICs offer a reliable platform that enables sensing capabilities through potent interactions between local electric fields and matter. Herein, a novel terahertz (THz) biosensor based on the integration of QBIC with graphene is reported, which enables multidimensional detection. The proposed biosensor is distinctive because of its ability to discern concentrations of ethanol and N‐methylpyrrolidone in a wide range from 100% to 0%, by monitoring the changes in the resonance intensity and maximum wavelet coefficient. This approach demonstrates an excellent linear fit, which ensures robust quantitative analysis. The remarkable sensitivity of our biosensor enables it to detect minute changes in low‐concentration solutions, with the lowest detection concentration value (LDCV) of 0.21 pg mL−1. 2D wavelet coefficient intensity cards are effectively constructed through continuous wavelet transforms, which presents a more accurate approach for determining the concentration of the solution. Ultimately, the novel sensing platform offers a host of advantages, including heightened sensitivity and reusability. This pioneering approach establishes a new avenue for liquid‐based terahertz biosensing.
Funder
National Key Research and Development Program of China
National Natural Science Foundation of China
Natural Science Foundation of Beijing Municipality
Beijing Nova Program
Natural Science Foundation of Shandong Province
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Cited by
10 articles.
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