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1.辽宁石油化工大学石油化工学院,抚顺 113001
2.杭州师范大学材料与化学化工学院 有机硅化学及材料技术教育部重点实验室 浙江省有机硅材料技术重点实验室,杭州 311121
* 赵桂艳(1979-),女,副教授,主要从事聚合物共混改性研究。E-mail: gyzhao@lnpu.edu.cn;
朱雨田(1979-),男,教授,主要从事高分子材料的结构和性能研究。E-mail: ytzhu@hznu.edu.cn
纸质出版日期:2023-10-20,
收稿日期:2022-11-22,
修回日期:2023-01-15,
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李岚霆, 陈建闻, 赵桂艳, 韩媛媛, 朱雨田. 高分子基柔性电容式压力传感材料的研究进展[J]. 高分子通报, 2023,36(10):1290-1301.
LI Lan-ting, CHEN Jian-wen, ZHAO Gui-yan, HAN Yuan-yuan, ZHU Yu-tian. Progress in Polymer-based Flexible Capacitive Pressure Sensing Materials[J]. Polymer Bulletin, 2023,36(10):1290-1301.
李岚霆, 陈建闻, 赵桂艳, 韩媛媛, 朱雨田. 高分子基柔性电容式压力传感材料的研究进展[J]. 高分子通报, 2023,36(10):1290-1301. DOI: 10.14028/j.cnki.1003-3726.2023.10.005.
LI Lan-ting, CHEN Jian-wen, ZHAO Gui-yan, HAN Yuan-yuan, ZHU Yu-tian. Progress in Polymer-based Flexible Capacitive Pressure Sensing Materials[J]. Polymer Bulletin, 2023,36(10):1290-1301. DOI: 10.14028/j.cnki.1003-3726.2023.10.005.
高分子基柔性电容式压力传感器具有机械柔韧性、高灵敏度、优异的可重复性、功耗低、空间分辨率高等优点,在可穿戴电子器件、电子皮肤等领域的应用越来越广泛,引起了人们的广泛关注。本文首先对不同传感机理的压力传感材料进行简要介绍,然后重点论述了高分子基柔性电容式压力传感材料的研究进展,并对其传感机理、优缺点以及优化策略进行了详细讨论。最后,本论文还对电容式压力传感材料目前存在的问题及未来发展趋势进行了展望。
Attributed to the advantages of mechanical flexibility
high sensitivity
excellent repeatability
low power consumption
and high spatial resolution
polymer-based flexible capacitive pressure sensors have attracted widespread attention
which are widely used in wearable electronic devices
electronic skin
and other fields. In this review
we briefly introduce various pressure sensing materials with different sensing mechanisms. Subsequently
we systemically summarize the recent progress of polymer-based flexible capacitive pressure sensing materials
including their sensing mechanisms
advantages and disadvantages as well as optimization strategies. Finally
the current challenges and future development trends of capacitive pressure sensing materials are also discussed in this paper.
高分子基柔性传感材料电容式压力传感离电式压力传感传感机理可穿戴电子器件
Polymer-based flexible sensing materialsCapacitive pressure sensorIontronic pressure sensorSensing mechanismWearable electronics
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