材料科学
灵敏度(控制系统)
折射率
微尺度化学
光纤
光电子学
制作
栅栏
光纤布拉格光栅
波长
纤维
自愈水凝胶
生物医学工程
光学
复合材料
电子工程
物理
工程类
医学
病理
数学教育
高分子化学
数学
替代医学
作者
Heming Wei,Han Long,Ruixue Yin,Yang Tian,Yunqi Liu,Chengbo Mou,Fufei Pang,Tingyun Wang
标识
DOI:10.1016/j.snb.2023.133707
摘要
Concanavalin A (Con A)-based hydrogels have been widely studied in the field of glucose detection as Con A can selectively bond to glucose molecules. Many sensors have been proposed for detecting glucose using fluorescence or optical methods. However, these sensors suffer from limited sensitivity and fabrication issues. In this study, a label-free optical-fiber long-period grating-based glucose sensor is proposed. Con A-based UV-curable hydrogel was used as the sensing material, which can be rapidly prototyped using the micro-3D printing technique to realize microscale structures. Polymerized hydrogel grating structures patterned onto the fiber surface can periodically modulate the refractive index of the fiber modes affecting the resonant spectrum of the device. The structures swelled upon the addition of a glucose solution, which caused a wavelength shift in the transmission spectrum. The experiments showed that glucose-induced swelling/deswelling was reversible, and the wavelength versus glucose concentration was linear with a response sensitivity of 0.206 nm/mM over a wide range of 0–25 mM with high linearity (R2 = 0.998). The device works well at room temperature and has a short response time. It has significant potential for use in real time continuous glucose monitoring.
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