4.6 Article

Hypersensitized Metamaterials Based on a Corona-Shaped Resonator for Efficient Detection of Glucose

期刊

APPLIED SCIENCES-BASEL
卷 11, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/app11010103

关键词

corona-shaped resonator; metamaterial sensor; dielectric characteristic; glucose concentration

资金

  1. National Key Research and Development Program of China [2017YFA0204600]
  2. National Natural Science Foundation of China [51802352]
  3. Central South University [2018zzts355]
  4. Teaching reform for postgraduate students of Central South University [2019JG085]

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The study introduces a novel design of a real-time noninvasive metamaterial sensor, based on a corona-shaped resonator, for efficient detection of glucose in aqueous solutions. The sensor demonstrates good sensitivity and performance, with the ability to distinguish various glucose concentrations effectively.
In this work, a new design for a real-time noninvasive metamaterial sensor, based on a corona-shaped resonator, is proposed. The sensor was designed numerically and fabricated experimentally in order to be utilized for efficient detection of glucose in aqueous solutions such as water and blood. The sensor was inspired by a corona in-plane-shaped design with the presumption that its circular structure might produce a broader interaction of the electromagnetic waves with the glucose samples. A clear shift in the resonance frequency was observed for various glucose samples, which implies that the proposed sensor has a good sensitivity and can be easily utilized to distinguish any glucose concentration, even though their dielectric coefficients are close. Results showed a superior performance in terms of resonance frequency shift (1.51 GHz) and quality factor (246) compared to those reported in the literature. The transmission variation level increment |S21| was investigated for glucose concentration in both water and blood. The sensing mechanism was elaborated through the surface current, electric field and magnetic field distributions on the corona resonator. The proposed metamaterials sensor is considered to be a promising candidate for biosensor and medicine applications in human glycaemia monitoring.

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