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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:通过平面丝网印刷的柔性和弹力导电棉织物的开发:PSS / PDMS导电聚合物复合材料

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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(3,4-亚乙基氧噻吩)聚苯乙烯磺酸酯(PEDOT:PSS)和聚(二甲基硅氧烷-B-环氧乙烷)(PDMS-B-PEO),通过丝网印刷成功生产了导电和可拉伸针织棉织物(PDMS-B-PEO) )导电聚合物复合材料。观察到,机械和电性能高度取决于聚合物的比例,其打开新窗口以产生PEDOT:PSS的导电织物,具有不同应用区域的独特性质。弯曲长度分析证明,弯曲刚度较低,较高的PDMS-B-PEO对PEDOT:PSS比率而拉伸强度增加。 SEM测试表明,当加入PDMS-B-PEO与PEDOT:单独的PSS相比,织物的平滑度更好。通过将PDMS-B-PEO改变为PEDOT:PSS比例,已经获得了电阻从24.8至90.8kΩ/ sq的电阻的织物。此外,延长和洗涤增加了电阻。然而,表面电阻的变化在较高的PDMS-B-PEO下线性下降到PEDOT:PSS比率。导电织物根据其各自的表面电阻来构造基于纺织品的应变,水分和生物能感传感器。

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