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Flexible multisensory sensor based on hierarchically porous ionic liquids/thermoplastic polyurethane composites

热塑性聚氨酯 材料科学 复合材料 多孔性 聚氨酯 热塑性塑料 离子液体 离子键合 离子 有机化学 弹性体 化学 催化作用
作者
Meiling Peng,Xiang Li,Yinfeng Liu,Jianwen Chen,Xiaohua Chang,Yutian Zhu
出处
期刊:Applied Surface Science [Elsevier BV]
卷期号:610: 155516-155516 被引量:29
标识
DOI:10.1016/j.apsusc.2022.155516
摘要

• A lightweight and flexible multisensory sensor is designed based on the hierarchically porous ionic liquids (ILs)/thermoplastic polyurethane (TPU) composite. • The as-prepared porous TPU@ILs sensor possesses both the strain- and temperature- sensing capabilities. • The sensor has great potentials in electronic skins and wearable electronics. With the rapid development of wearable electronics and electronic skins, the demand for portable and flexible sensors that can perceive surrounding information, including mechanical forces, temperature, and humidity, is dramatically increasing. Herein, we develop a lightweight and flexible multisensory sensor based on the hierarchically porous ionic liquids (ILs)/thermoplastic polyurethane (TPU) composite by the combination of vapor-induced phase separation technique and ultrasound-assisted anchoring technique. The as-prepared porous TPU@ILs sensor possesses both the strain- and temperature- sensing capabilities. As a strain sensor, it exhibits excellent sensing performance in various aspects, such as ultra-low detection limit (0.5%), ultra-wide sensing range (0.5%-600%), fast response/recovery time (100ms/80ms), and outstanding durability, attributed to the hierarchically porous microstructure of TPU@ILs composites. Due to the rigid conductivity-temperature dependence of ILs, the designed porous TPU@ILs sensor also possesses outstanding temperature sensing capability, which has both the high temperature resolution (0.05 °C) and ultrawide temperature sensing range (−30-80 °C). This work provides an effective but simple strategy to fabricate high-performance multisensory sensor, which has great potentials in electronic skins and wearable electronics.
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