Article detail · 2020
Design and study of a metamaterial based sensor for the application of liquid chemicals detection
- Year
- 2020
- Type
- article
Data source split
- YÖKSİS YÖKSİS article record
- YÖKSİS venue Journal of Materials Research and Technology
- Catalog match (ISSN) Journal of Materials Research and Technology
- OpenAlex OpenAlex enrichment (abstract, citations, topics)
Abstract
OpenAlex · English
The detection of chemical samples having close dielectric response is a big challenge as the detection principle is driven by the variations in the dielectric parameters of the investigated samples. In the current work, a new metamaterial-based sensor is designed and fabricated in order to be used for the detection of liquid chemicals in the frequency range from 8 to 12 GHz. Several designs were tested using genetic algorithm, which is embedded in the CST microwave studio, in order to optimize the desired dimensions of the resonator. The simulation and experimental results showed that the proposed sensor is working well to detect various liquids, including (i) clean and waste transformer oils, (ii) corn, cotton and olive oils, (iii) branded and unbranded diesels and (iv) aniline doped ethyl-alcohol and benzene doped carbon tetrachloride. This was made possible through the occurrence of a shift in the resonant frequency of about 250 MHz, 200 MHz, 250 MHz, 150 MHz and 50 MHz for the aforementioned samples, respectively. The sensing mechanism was interpreted through the surface current and electric field distributions. We believe that the proposed sensor is viable to be used in various applications including liquid chemicals detection and industrial applications.
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Citations
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139 citations
OpenAlex cited_by_count (cache / database)
28 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- An ultrathin and dual band metamaterial perfect absorber based on ZnSe for the polarization-independent in terahertz range 2021
- Experimental verification of phononic crystal based on square arrays of cylindrical holes against seismic vibrations in full-scale systems: modeling, sensing and signal processing of seismic vibrations 2021
- An ultrathin and dual band metamaterial perfect absorber based on ZnSe for the polarization-independent in terahertz range 2021
- New compact six-band metamaterial absorber based on Closed Circular Ring Resonator (CCRR) for Radar applications 2022
- Simulated and experimental verification of the microwave dual-band metamaterial perfect absorber based on square patch with a 450 diagonal slot structure 2021
- Investigation of methanol contaminated local spirit using metamaterial based transmission line sensor 2021
- Investigation of methanol contaminated local spirit using metamaterial based transmission line sensor 2021
- Investigation of methanol contaminated local spirit using metamaterial based transmission line sensor 2021
- Dual-band measurement of complex permittivity in a microwave waveguide with a flexible, thin and sensitive metamaterial-based sensor 2022
- Dual-band measurement of complex permittivity in a microwave waveguide with a flexible, thin and sensitive metamaterial-based sensor 2022