Daňová Romana, Olejnik Robert, Slobodian Petr, Matyas Jiri
Centre of Polymer Systems, University Institute, Tomas Bata University in Zlin, 760 01 Zlin, Czech Republic.
Polymers (Basel). 2020 Mar 23;12(3):713. doi: 10.3390/polym12030713.
Wearable electronic sensor was prepared on a light and flexible substrate. The breathing sensor has a broad assumption and great potential for portable devices in wearable technology. In the present work, the application of a flexible thermoplastic polyurethane/multiwalled carbon nanotubes (TPU/MWCNTs) strain sensor was demonstrated. This composite was prepared by a novel technique using a thermoplastic filtering membrane based on electrospinning technology. Aqueous dispersion of MWCNTs was filtered through membrane, dried and then welded directly on a T-shirt and encapsulated by a thin silicone layer. The sensing layer was also equipped by electrodes. A polymer composite sensor is capable of detecting a deformation by changing its electrical resistance. A T-shirt was capable of analyzing a type, frequency and intensity of human breathing. The sensitivity to the applied strain of the sensor was improved by the oxidation of MWCNTs by potassium permanganate (KMnO) and also by subsequent application of the prestrain.
可穿戴电子传感器制备在轻质且柔性的基底上。呼吸传感器在可穿戴技术中的便携式设备方面具有广泛的设想和巨大的潜力。在当前工作中,展示了一种柔性热塑性聚氨酯/多壁碳纳米管(TPU/MWCNTs)应变传感器的应用。这种复合材料是通过一种基于静电纺丝技术的新型热塑性过滤膜技术制备的。MWCNTs的水分散体通过膜过滤、干燥,然后直接焊接在T恤上,并由一层薄硅胶层封装。传感层还配备了电极。聚合物复合传感器能够通过改变其电阻来检测变形。一件T恤能够分析人类呼吸的类型、频率和强度。通过高锰酸钾(KMnO)对MWCNTs的氧化以及随后施加预应变,提高了传感器对所施加应变的灵敏度。