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Electrical properties of stretchable and skin-mountable PDMS/MWCNT hybrid composite films for flexible strain sensors

机译:用于柔性应变传感器的可拉伸和可耐皮带PDMS / MWCNT杂种复合膜的电性能

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Flexible strain sensors based on carbon nanofillers have great potential in the application of skin-adhesive sensors, wearable sensors, and tactile sensors, due to their superior electrical properties. Herein, the electrical properties of highly sensitive PDMS/MWCNT strain sensors made by vacuum filtration method were investigated. In order to obtain the electrical percolation curve of the flexible conductive films, first different samples were made with the same surface area but with different wt. % of CNTs. Then, depending on CNT content, the obtained conductive films exhibited initial electrical resistance in the range of 12.5 K omega to 22.8 M omega. The piezoresistive films with the CNT concentration of 1.4 to 2.9 mg/mm2 had shown superior resistance drop, so this interval was determined as the percolation threshold region. According to the SEM images, the nanocomposite layer thickness of the flexible strain sensors in this region was 790 nm to 1210 nm. Afterward, the percolation curve was obtained using curve fitting to the experimental data and the exact value of the percolation threshold was defined as phi c=1.992mg/mm2. Finally, in order to determine the minimum gauge factor (GFmin) of the sensors in percolation region, a flexible strain sensor in the upper limit of this region was selected and the piezoresistive properties of the selected sample were investigated.
机译:基于碳纳米填料的柔性应变传感器在施加皮肤粘合剂传感器,可穿戴传感器和触觉传感器的施用方面具有很大的潜力,由于其优异的电气性能。这里,研究了通过真空过滤方法制备的高敏感PDMS / MWCNT菌株传感器的电性能。为了获得柔性导电膜的电渗透曲线,使用相同的表面积但具有不同的WT制备第一不同样品。占CNT的百分比。然后,取决于CNT含量,所获得的导电膜在12.5kΩ至22.8mΩ的范围内表现出初始电阻。具有1.4至2.9mg / mm 2的CNT浓度的压阻膜显示出优异的电阻下降,因此该间隔被确定为渗透阈值区域。根据SEM图像,该区域中柔性菌株传感器的纳米复合层厚度​​为790nm至1210nm。之后,使用曲线配合对实验数据获得的渗透曲线,并且渗透阈值的确切值定义为PHI C = 1.992mg / mm2。最后,为了确定渗滤区域中传感器的最小规格因子(GFmin),选择该区域的上限中的柔性应变传感器,研究了所选样品的压阻性质。

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