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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A hierarchical carbon nanotube/SiO2 nanoparticle network induced superhydrophobic and conductive coating for wearable strain sensors with superior sensitivity and ultra-low detection limit
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A hierarchical carbon nanotube/SiO2 nanoparticle network induced superhydrophobic and conductive coating for wearable strain sensors with superior sensitivity and ultra-low detection limit

机译:一种分层碳纳米管/ SiO2纳米粒子网络诱导具有优异敏感性和超低检测限的可穿戴菌株传感器的超疏水和导电涂层

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摘要

It is desirable to develop strain sensors with large stretchability, high sensitivity, and good anti-corrosive properties, due to their promising applications in wearable electronics. Here, a facile spraying method is used to prepare superhydrophobic and conductive coatings on elastic tape with a hierarchical fluorinated carbon nanotube (FCNT)/SiO2 nanoparticle structure. The uniformly distributed FCNTs construct a conductive network, while hydrophobic SiO2 nanoparticles enhance the surface roughness, contributing to the superhydrophobicity. The superhydrophobic coating possesses excellent stability and durability when subjected to external forces such as repeated stretching and abrasion, and it also exhibits superior anti-corrosive properties. The superhydrophobic coating based strain sensors display an extremely low detection limit of strain (<0.1%) with a large strain sensing range (>80%), high sensitivity with a gauge factor as high as 1766, and excellent reliability and recyclability. The strain sensor could realize the full range monitoring of human motion including large and subtle body movements even in a harsh environment.
机译:由于其在可穿戴电子产品中的希望应用,期望具有大的拉伸性,高灵敏度和良好的抗腐蚀性能的应变传感器。这里,使用容纳喷涂方法在具有分层氟化碳纳米管(FCNT)/ SiO2纳米粒子结构的弹性带上制备超疏水和导电涂层。均匀分布的FCNT构建导电网络,而疏水性SiO2纳米颗粒增强了表面粗糙度,有助于超疏水性。超疏水涂层在经受外力如重复拉伸和磨损时具有优异的稳定性和耐久性,并且还具有卓越的抗腐蚀性。基于超疏水涂层的应变传感器显示出菌株(<0.1%)的极低检测限,具有大的应变感测范围(> 80%),高灵敏度,测量因子高达1766,以及优异的可靠性和可再循环性。应变传感器可以实现人类运动的全系列监测,包括大型和微妙的身体运动,即使在恶劣的环境中也是如此。

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