Litcius/Paper detail

Respiratory monitoring via a nanoporous film-coated tilted fiber Bragg grating humidity sensor

Jun Wu, Yufei Shi, Xijie Fen, Jun Zhou, Jie Dong, Wen Jun Zhou, Changyu Shen

2024Optics Letters12 citationsDOI

Abstract

A humidity sensor for respiratory monitoring based on a tilted fiber Bragg grating (TFBG) functionalized with a nanoporous coating consisting of titanium carbide (Ti 2 C) and fullerene (C 60 ) is proposed. By incorporating the C 60 into Ti 2 C, a nanocomposite film with abundant three-dimensional porousness is coated on the TFBG surface. The nanocomposite film with strong hygroscopicity and desorption properties is highly sensitive to environmental humidity variations, where the induced refractive index changes of the coating result in the spectral responses of TFBG multi-resonances. Experimental results show that the sensitivity of the sensor is as high as 0.055 dB/%RH in the relative humidity range of 10–90%RH with the response and recovery time of 0.59 and 0.91 s, respectively. Furthermore, the humidity sensor was successfully used to perform in vivo respiratory monitoring of the humans.

Topics & Concepts

Fiber Bragg gratingMaterials scienceOpticsPHOSFOSFiber optic sensorHumidityNanoporousRespiratory monitoringOptical fiberRefractive indexOptoelectronicsFiberPlastic optical fiberRespiratory systemComposite materialNanotechnologyMedicinePhysicsInternal medicineThermodynamicsAdvanced Fiber Optic SensorsGas Sensing Nanomaterials and SensorsAnalytical Chemistry and Sensors