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可穿戴光纤传感技术:研究进展及未来机遇

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近年来,可穿戴柔性电子器件快速发展并日趋成熟,广泛地应用在人体工程学、个性化医疗、电子皮肤、人机交互等领域.然而,传统电学传感器件具有容易受到电磁场干扰、不耐电化学腐蚀以及电气安全性等问题,因此可穿戴柔性光纤传感器逐渐得到研究者关注,与电学传感器研究形成良好的互补.本文主要关注可穿戴光纤传感器件研究进展,介绍氧化硅光纤和聚合物光纤这两大类光纤器件的光学传感原理、器件的材料和结构设计方法和光电信号处理技术,以及简要评述在人体健康监测、人机界面等领域的应用,并对未来发展趋势进行展望.
Wearable fiber-optic sensors:Recent advances and future opportunities
The past years have witnessed the fast development of wearable electronic sensors,which have broad applications in biomechanics,personal healthcare,electronic skin,and human-machine interface.Nevertheless,conventional electronic sensors suffer from susceptibility to electromagnetic interference,electrochemical corrosion,and electrical safety issues.Compared with electronic devices,optical sensor devices have the advantages of anti-electromagnetic interference and electrical safety,and optical signals have the featured properties of large transmission bandwidth,multiplexing,flexible modulation,and demodulation methods,which show great potential in multi-degree-of-freedom sensing.The research of wearable optical fiber sensors is emerging recently,which can be complementary to electric sensors.This work focuses on the recent advances in wearable fiber-optic sensors,including silica fiber and polymer fiber devices.In the silica fiber section,the sensing mechanism,fabrications,and wearable sensing applications of fiber Bragg gratings and microfiber structures are mainly focused.In particular,microfibers with diameters of tens of nanometers to several micrometers,show many different intriguing properties compared with traditional bulk fibers,such as strong light field confinement,strong evanescent fields,high nonlinearity,and mechanical strength,which are promising for high-dense integration.In the polymer fiber section,the fundamental sensing mechanisms and fiber-optic sensing applications are discussed.Compared with rigid silica fibers,polymer optical fibers have similar mechanical modulus to human tissues,better biocompatibility and stretchability,and they are also easy to process and mix with other functional organic materials,and some polymer materials are also degradable or have the self-healing capability.In addition,the hydrogel fibers for in vivo chemical sensing are highlighted.In the final section,it summarizes the pros and cons of typical wearable sensors,and the challenges and future opportunities of this field are discussed.

fiber-optic sensorwearable devicepersonal healthcarehuman-machine interface

赵磊、谭颖玲、李航、陈锦辉

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厦门大学电子科学与技术学院,厦门 361005

光纤传感 可穿戴传感器件 人体健康监测 人机交互

国家自然科学基金

62005231

2023

中国科学(物理学 力学 天文学)
中国科学院

中国科学(物理学 力学 天文学)

CSTPCDCSCD北大核心
影响因子:0.644
ISSN:1674-7275
年,卷(期):2023.53(11)
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