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Nylon 6 Nanofiber Web-Based Signal Transmission Line Treated with PEDOT:PSS and DMSO Treatment

机译:尼龙6基于纳米纤维网的信号传输线用PEDOT处理:PSS和DMSO治疗

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摘要

Highly conductive nylon 6 nanofiber webs, incorporating poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) and dimethyl sulfoxide (DMSO), were prepared for textile-based signal transmission lines. To improve the electrical performance of the textiles, they were optimized by the number of coating cycles and the solvent treatment step. The nanofiber web coated four times with PEDOT:PSS showed a six-times reduction in sheet resistance compared to that of once. In addition, the sample treated with both adding and dipping of DMSO showed a significant decrease of 83 times in sheet resistance compared to the sample without treatment of DMSO. Using samples with excellent electrical conductivity, the waveforms of the signal in the time domain were analyzed and shown to have an amplitude and phase almost identical to that of the conventional copper wire. As a result of the S21 characteristic curve, selected textiles were available up to the 15 MHz frequency bandwidth. In the FE-SEM image, it was observed that the surface of the coated sample was generally covered with PEDOT:PSS, which was distinguished from the untreated sample. These results demonstrate that the nanofiber web treated with the optimized conditions of PEDOT:PSS and DMSO can be applied as promising textile-based signal transmission lines for smart clothing.
机译:对于纺织基信号传输线,制备了掺入聚(苯乙烯磺酸盐)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)(PEDOT)的信号传输线。为了改善纺织品的电性能,它们通过涂布循环的数量和溶剂处理步骤进行了优化。纳米纤维纤维网与PEDOT涂有四次:PSS与一次相比,薄层电阻减小了六次。此外,与DMSO的加入和浸渍处理的样品显示出与样品相比,在薄层电阻中显着降低了83倍,而不处理DMSO。使用具有优异导电性的样品,分析时域中的信号的波形,并示出具有与传统铜线的幅度和相位相同。由于S21特征曲线,所选纺织品可用于15 MHz频率带宽。在Fe-SEM图像中,观察到涂覆样品的表面通常用PEDOT:PSS与未处理的样品区分开来。这些结果表明,用PEDOT的优化条件处理的纳米纤维网:PSS和DMSO可以应用于用于智能衣物的有前途的纺织品信号传输线。

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