首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Development of a Flex and Stretchy Conductive Cotton Fabric Via Flat Screen Printing of PEDOT:PSS/PDMS Conductive Polymer Composite
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Development of a Flex and Stretchy Conductive Cotton Fabric Via Flat Screen Printing of PEDOT:PSS/PDMS Conductive Polymer Composite

机译:通过PEDOT:PSS / PDMS导电聚合物复合材料的平面丝网印刷开发一种柔软而有弹性的导电棉织物

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摘要

In this work, we have successfully produced a conductive and stretchable knitted cotton fabric by screen printing of poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT:PSS) and poly(dimethylsiloxane-b-ethylene oxide)(PDMS-b-PEO) conductive polymer composite. It was observed that the mechanical and electrical properties highly depend on the proportion of the polymers, which opens a new window to produce PEDOT:PSS-based conductive fabric with distinctive properties for different application areas. The bending length analysis proved that the flexural rigidity was lower with higher PDMS-b-PEO to PEDOT:PSS ratio while tensile strength was increased. The SEM test showed that the smoothness of the fabric was better when PDMS-b-PEO is added compared to PEDOT:PSS alone. Fabrics with electrical resistance from 24.8 to 90.8 kΩ/sq have been obtained by varying the PDMS-b-PEO to PEDOT:PSS ratio. Moreover, the resistance increased with extension and washing. However, the change in surface resistance drops linearly at higher PDMS-b-PEO to PEDOT:PSS ratio. The conductive fabrics were used to construct textile-based strain, moisture and biopotential sensors depending upon their respective surface resistance.
机译:在这项工作中,我们通过丝网印刷聚(3,4-乙撑二氧噻吩)聚苯乙烯磺酸盐(PEDOT:PSS)和聚(二甲基硅氧烷-b-环氧乙烷)(PDMS-b-PEO)成功地生产了导电且可拉伸的针织棉织物)导电聚合物复合材料。据观察,机械和电气性能高度依赖于聚合物的比例,这为生产具有针对不同应用领域的独特性能的基于PEDOT:PSS的导电织物打开了新的窗口。弯曲长度分析表明,较高的PDMS-b-PEO与PEDOT:PSS之比时,弯曲刚度较低,而抗拉强度则增加。 SEM测试表明,与单独使用PEDOT:PSS相比,添加PDMS-b-PEO时织物的光滑度更好。通过改变PDMS-b-PEO与PEDOT:PSS之比,可获得电阻为24.8至90.8kΩ/ sq的织物。此外,电阻随着延伸和洗涤而增加。但是,在更高的PDMS-b-PEO与PEDOT:PSS比率下,表面电阻的变化呈线性下降。导电织物根据其各自的表面电阻用于构建基于纺织品的应变,湿度和生物电势传感器。

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