应变不灵敏型可拉伸导体在生理监测领域的研究进展  

Research progress of strain-insensitive stretchable conductor in physiological monitoring

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作  者:李娟 刘金坤 李新新 高帅 田明伟[1] 李煜天 LI Juan;LIU Jinkun;LI Xinxin;GAO Shuai;TIAN Mingwei;LI Yutian(Textile and Clothing College,Qingdao University,Qingdao,266071,China;Shandong Anran Nano Industrial Development Co.,Ltd.,Weihai,264200,China)

机构地区:[1]青岛大学纺织服装学院,山东青岛266071 [2]山东安然纳米实业发展有限公司,山东威海264200

出  处:《棉纺织技术》2025年第4期23-31,共9页Cotton Textile Technology

基  金:国家自然科学基金项目(22208178、62301290);山东省自然科学基金项目(ZR2023YQ037,ZR2020QE074,ZR2023QE043);青岛市自然科学基金项目(23-2-1-249-zyyd-jch)。

摘  要:鉴于可拉伸导体在应用过程中的局限性,阐述了应变不灵敏型可拉伸导体的材料、导电路径构建方式和在生物电子器件互连、生物电信号监测、生理压力信号监测、生理温度监测、人体葡萄糖浓度监测等方面的研究进展。分析了目前应变不灵敏型可拉伸导体存在的问题,如导电性能欠缺、目标传感信号与干扰信号无法完全解耦、难以一体化成型和大规模生产等问题。展望了未来应变不灵敏型可拉伸导体的发展趋势。认为:优良的导电性能、宽应变范围、大规模生产、搭载其他平台实现多功能化应用等是应变不敏感型可拉伸导体的研究发展方向。Given the limitations of stretchable conductors in practical applications,the strain-insensitive stretchable conductor materials,conductive path construction methods,and recent advancements in interconnecting bioelectronic devices,monitoring of biopotential signals,physiological pressure,temperature and glucose concentrations were reviewed.The current challenges faced by strain-insensitive stretchable conductors including low conductivity,inadequate signal decoupling from interference,difficulties in integrated molding and large-scale production were analyzed.The future development trends of these conductors were also outlooked.It is considered that excellent conductivity,wide strain range,mass production and multi-functional integration with other platforms are identified as key research and development direction of strain-insensitive stretchable conductors.

关 键 词:智能纺织品 应变不灵敏性 导电路径构建 柔性传感器 传感器 

分 类 号:TS101.8[轻工技术与工程—纺织工程]

 

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