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Highly sensitive flexible strain sensor based on microstructured biphasic hydrogels for human motion monitoring

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摘要 Flexible strain sensors have been extensively used in human motion detection,medical aids,electronic skins,and other civilian or military fields.Conventional strain sensors made of metal or semiconductor materials suffer from insufficient stretchability and sensitivity,imposing severe constraints on their utilization in wearable devices.Herein,we design a flexible strain sensor based on biphasic hydrogel via an in-situ polymerization method,which possesses superior electrical response and mechanical performance.External stress could prompt the formation of conductive microchannels within the biphasic hydrogel,which originates from the interaction between the conductive water phase and the insulating oil phase.The device performance could be optimized by carefully regulating the volume ratio of the oil/water phase.Consequently,the flexible strain sensor with oil phase ratio of 80%demonstrates the best sensitivity with gauge factor of 33 upon a compressive strain range of 10%,remarkable electrical stability of 100 cycles,and rapid resistance response of 190 ms.Furthermore,the human motions could be monitored by this flexible strain sensor,thereby highlighting its potential for seamless integration into wearable devices.
出处 《Frontiers of Materials Science》 SCIE CSCD 2023年第4期55-64,共10页 材料学前沿(英文版)
基金 China Postdoctoral Science Foundation(Grant No.2021M700773) the Jiangsu Planned Projects for Postdoctoral Research Funds(Grant No.2021K509C)。
作者简介 Xin Gao,Xinyu Wang,contributed equally to this work;Xingce Fan,E-mail:fanxingce@126.com。
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