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A flexible and stretchable photonic crystal sensor for biosensing and tactile sensing

Wang Peng, Bing Huang, Xuanxuan Huang, Han Song, Qingxi Liao

Year
2022
Citations
20
Access
Open access

Abstract

as the guided layer, and the nanograting structure was realized by nanoreplica molding. For biosensing experiment, a sensitivity of 93 nm/RIU is verified with ambient environment RI variance simulation results. For tactile sensing experiment, the highest resolution for strain sensing is 0.1%, and the minimum detected scale of the grating period variation is 0.1 nm. The TiO2/PDMS structure based flexible and stretchable photonic crystal sensor demonstrates highly sensitivity and potentially cost effective for biosensing and tactile sensing, and it is promising in the area of intelligent diagnostic medical robot.

Keywords

BiosensorTactile sensorPhotonic crystalMaterials sciencePhotonicsGratingSensitivity (control systems)NanotechnologyOptoelectronicsRobot

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