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首页> 外文期刊>Journal of Applied Polymer Science >Electrochemically synthesized polypyrrole and Cu-plated nylon/spandex for electrotherapeutic pad electrode
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Electrochemically synthesized polypyrrole and Cu-plated nylon/spandex for electrotherapeutic pad electrode

机译:电化学合成的聚吡咯和镀铜尼龙/氨纶作为电疗垫电极

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Electroconductive fabrics were prepared to improve the properties of conductive electrode pad material used for electrotherapy when it is subjected to various movements of the human body. Highly stretchable and conductive fabrics were prepared by in situ electrochemical polymerization of polypyrrole (PPy) on nylon/spandex stretchable fabric in aqueous solutions with 0.05M pyrrole and 0.05M anthraquinone-2-sulfonic acid, sodium salt monohydrate (AQSA) at room temperature for 2 h. Electroless Cu plating was also applied after chemical polymerization of PPy to improve the conductivity of the fabric pad. Performance of prepared stretchable conductive fabric pad was evaluated in terms of conductivity changes as a function of extension and continuous current application time, and clinical test. As a result, the fabric conductivity was well maintained with extension up to 60% and prolonged treatment time over 30 min. The effect of transcutaneous electrical nerve stimulation (TENS) was observed with prepared TENS pad in this study and conventional TENS pad for medical use. The significant effect of TENS was observed with a pad made of conductive fabric by Cu plating and a conventional TENS pad (P < 0.05, respectively). Even though the efficiency of an experimental pad made of fabric composite with electrochemically polymerized PPy was not as good as conventional TENS pad for medical use in this experiment, it can possibly be used for other applications where relatively low-strength electrical pulse is required. (C) 2004 Wiley Periodicals, Inc. [References: 19]
机译:制备导电织物以当其经受人体的各种运动时改善用于电疗的导电电极垫材料的性能。通过在室温下在含有0.05M吡咯和0.05M蒽醌-2-磺酸,一水合钠盐(AQSA)的水溶液中在尼龙/氨纶可拉伸织物上原位电化学聚合聚吡咯(PPy)制备高可拉伸和导电的织物2小时在PPy进行化学聚合之后,还进行了化学镀铜,以提高织物垫的导电性。根据电导率随延伸和连续电流施加时间的变化而变化的性能,以及临床试验来评估所制备的可拉伸导电织物垫的性能。结果,织物的电导率得到很好的维持,延伸率高达60%,并在30分钟内延长了处理时间。在本研究中,使用准备好的TENS垫和常规的医用TENS垫观察到了经皮电神经刺激(TENS)的效果。使用由导电材料制成的镀铜垫和传统的TENS垫观察到TENS的显着效果(分别为P <0.05)。尽管在本实验中,由具有电化学聚合PPy的织物复合材料制成的实验垫的效率不如医学上使用的常规TENS垫那么好,它仍可用于需要较低强度电脉冲的其他应用。 (C)2004 Wiley Periodicals,Inc. [参考:19]

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