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基于可拉伸热电的自供电双参数传感器,具有解耦的温度和应变传感功能。

Stretchable Thermoelectric-Based Self-Powered Dual-Parameter Sensors with Decoupled Temperature and Strain Sensing.

作者信息

He Xinyang, Hao Yunna, He Mantang, Qin Xiaohong, Wang Liming, Yu Jianyong

机构信息

Key Laboratory of Textile Science & Technology, Ministry of Education, College of Textiles, Donghua University, Shanghai 201620, China.

Innovation Center for Textile Science and Technology, Donghua University, Shanghai 201620, China.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 22;13(50):60498-60507. doi: 10.1021/acsami.1c20456. Epub 2021 Dec 8.

Abstract

Thermoelectric-based sensors with multifunctional sensing properties that can recognize different stimulations in a self-powered environment by converting low-grade heat into electrical energy have attracted increasing attention. However, the current thermoelectric-based multifunctional sensors are faced with issues such as limited preparation methods, complex structural designs, and hard decoupling, which greatly hinder their further development in the field of wearable electronics. Herein, we have fabricated novel free-standing self-powered temperature-strain sensors based on poly(3,4-ethylenedioxythiophene) polystyrenesulfonate (PEDOT:PSS)/carbon nanotube (CNT)/waterborne polyurethane (WPU) composite films through a simple drop-casting method. The composite films can maintain stable thermoelectric performance after washing 1000 times and withstand repeated bending and stretching. More importantly, based on the Seebeck effect arising from PEDOT:PSS/CNT composites, the assembled sensor successfully detects temperature changes and strain deformations under a self-powered condition. The decoupling of strain stimulation and temperature stimulation is mainly attributed to the good conductive network inside the composite film and the conductive bridge formed by PEDOT:PSS particles between CNTs when the composite film is stretched. Thus, the designed self-powered sensor with dual-parameter sensing prepared by a simple strategy has shown great potential in wearable electronics.

摘要

具有多功能传感特性的基于热电的传感器,能够通过将低品位热能转化为电能,在自供电环境中识别不同刺激,已引起越来越多的关注。然而,当前基于热电的多功能传感器面临制备方法有限、结构设计复杂和去耦困难等问题,这极大地阻碍了它们在可穿戴电子领域的进一步发展。在此,我们通过简单的滴铸法制备了基于聚(3,4-乙撑二氧噻吩)聚苯乙烯磺酸盐(PEDOT:PSS)/碳纳米管(CNT)/水性聚氨酯(WPU)复合膜的新型独立自供电温度-应变传感器。复合膜在洗涤1000次后仍能保持稳定的热电性能,并能承受反复的弯曲和拉伸。更重要的是,基于PEDOT:PSS/CNT复合材料产生的塞贝克效应,组装的传感器在自供电条件下成功检测到温度变化和应变变形。应变刺激和温度刺激的去耦主要归因于复合膜内部良好的导电网络以及复合膜拉伸时PEDOT:PSS颗粒在碳纳米管之间形成的导电桥。因此,通过简单策略制备的具有双参数传感的设计自供电传感器在可穿戴电子领域显示出巨大潜力。

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