Affiliation:
1. Tiangong University
2. Shaoxing Keqiao Research Institute of Tiangong University
3. Tianjin University of Technology and Education
4. Nankai University
5. Tianjin University
6. Wearable IC Intelligent Technology (Tianjin) Co. Ltd.
7. University of Wollongong
Abstract
Waveguide Bragg grating (WBG) blood glucose sensing, as a biological sensing technology with broad application prospects, plays an important role in the fields of health management and medical treatment. In this work, a polymer-based cascaded WBG is applied to glucose detection. We investigated photonic devices with two different grating structures cascaded—a crossed grating and a bilateral grating—and analyzed the effects of the crossed grating period, bilateral grating period, and number of grating periods on the sensing performance of the glucose sensor. Finally, the spectral reflectance characteristics, response time, and sensing specificity of the cascaded WBG were evaluated. The experimental results showed that the glucose sensor has a sensitivity of 175 nm/RIU in a glucose concentration range of 0–2 mg/ml and has the advantages of high integration, a narrow bandwidth, and low cost.
Funder
Science Popularizing Research Fund for the Graduate Students of China Association for Science and Technology
Tianjin Municipal Science and Technology Popularization Program
National Natural Science Foundation of China