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On-Chip Glucose Sensor With a Microstructure Gap for Sensitivity Enhancement

作者:Jiaqi Ran, Yahao Li, Zongyang Cai, Junyu Zhang, Xiaofeng Liu, Yongyi Lu, Zhaoqiang Zheng, Qingming Chen, Ou Xu, Xinyong Dong, Quandong Huang · 发表于:Journal of Lightwave Technology · 年份:2025 · DOI:10.1109/jlt.2025.3598122 · 被引用次数:1 · 研究领域:Electrochemical sensors and biosensors、Microfluidic and Capillary Electrophoresis Applications、Analytical Chemistry and Sensors

On-chip photonic glucose sensors are important for future development in biosensing, disease diagnosis, and environmental monitoring, where a compact and high-sensitivity sensing head is the key component. In this paper, we demonstrate a high-sensitivity sensing head for glucose concentration monitoring using a Mach-Zehnder Interferometer (MZI) formed polymer waveguides with a microstructure gap on the sensing arm. By optimizing the length and gap of the sensing arm, the sensor achieves a sensitivity of glucose concentration of 2.37 nm/(g/L) (corresponding to 2651 nm/RIU) with a gap length of only 50 μm. To validate the idea, we fabricate the on-chip sensor using an in-house microfabrication process. The fabricated sensing chip shows a sensitivity of glucose concentration of 2.32 nm/(g/L) (corresponding to 2554 nm/RIU) with low-temperature crosstalk, as the temperature sensitivity is only 31 pm/°C. The proposed on-chip sensor offers high sensitivity, low crosstalk, and low cost, making it a promising candidate for detection applications requiring a high-sensitivity sensing head.