Shi Shangxuan, Liang Jiao, Qu Chenkai, Chen Shangbi, Sheng Bin
School of Optical Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.
Shanghai Key Laboratory of Modern Optical Systems, Engineering Research Center of Optical Instruments and Systems, Shanghai 200093, China.
Micromachines (Basel). 2022 Aug 13;13(8):1309. doi: 10.3390/mi13081309.
Wearable fabric sensors have attracted enormous attention due to their huge potential in human health and activity monitoring, human-machine interaction and the Internet of Things (IoT). Among natural fabrics, bast fabric has the advantage of high strength, good resilience and excellent permeability. Laser engraving, as a high throughput, patternable and mask-free method, was demonstrated to fabricate fabric sensors. In this work, we developed a simplified, cost-effective and environmentally friendly method for engraving ramie fabric (a kind of bast fabric) directly by laser under an ambient atmosphere to prepare strain and humidity sensors. We used carboxymethylcellulose (CMC) to pretreat ramie fabric before laser engraving and gained laser-carbonized ramie fabrics (LCRF) with high conductivity (65 Ω sq) and good permeability. The strain and humidity sensors had high sensitivity and good flexibility, which can be used for human health and activity monitoring.
可穿戴织物传感器因其在人体健康与活动监测、人机交互以及物联网(IoT)方面的巨大潜力而备受关注。在天然织物中,麻织物具有强度高、弹性好和透气性优异的优点。激光雕刻作为一种高通量、可图案化且无需掩膜的方法,已被证明可用于制造织物传感器。在这项工作中,我们开发了一种简化、经济高效且环保的方法,即在环境气氛下通过激光直接雕刻苎麻织物(一种麻织物)来制备应变和湿度传感器。我们在激光雕刻前使用羧甲基纤维素(CMC)对苎麻织物进行预处理,得到了具有高导电性(65Ω/sq)和良好透气性的激光碳化苎麻织物(LCRF)。所制备的应变和湿度传感器具有高灵敏度和良好的柔韧性,可用于人体健康和活动监测。