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Simultaneously Optimize the Response Speed and Sensitivity of Low Dimension Conductive Polymers for Epidermal Temperature Sensing Applications

机译:同时优化表皮温度传感应用的低尺寸导电聚合物的响应速度和灵敏度

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摘要

Low dimension poly(3,4-ethylenedioxythiophene) poly (styrenesulfonate) (PEDOT: PSS) has been applied as resistor-type devices for temperature sensing applications. However, their response speed and thermal sensitivity is still not good enough for practical application. In this work, we proposed a new strategy to improve the thermal sensing performance of PEDOT: PSS by combined micro/nano confinement and materials doping. The dimension effect is carefully studied by fabricating different sized micro/nanowires through a low-cost printing approach. It was found that response speed can be regulated by adjusting the surface/volume (S/V) ratio of PEDOT: PSS. The fastest response (<3.5 s) was achieved by using nanowires with a maximum S/V ratio. Besides, by doping PEDOT: PSS nanowires with Graphene oxide (GO), its thermo-sensitivity can be maximized at specific doping ratio. The optimized nanowires-based temperature sensor was further integrated as a flexible epidermal electronic system (FEES) by connecting with wireless communication components. Benefited by its flexibility, fast and sensitive response, the FEES was demonstrated as a facile tool for different mobile healthcare applications.
机译:低维的聚(3,4-亚乙基)聚(苯乙烯磺酸盐)(PEDOT:PSS)已经被应用为用于温度感测应用电阻型器件。然而,他们的响应速度和热灵敏度还是不够好实际应用。通过结合微PSS /纳米约束和材料掺杂:在这项工作中,我们提出了改进PEDOT的热感知性能的新战略。尺寸效应仔细地通过低成本的印刷方法制造不同尺寸的微/纳米线研究。结果发现,反应速度可通过调节表面/体积的PEDOT(S / V)的比率进行调节:PSS。最快的响应(<3.5秒),通过使用纳米线具有最大的S / V比来实现的。另外,通过掺杂PEDOT:与石墨烯氧化物(GO)PSS纳米线,其热灵敏度可在特定的掺杂率最大化。优化的基于纳米线温度传感器进一步集成为通过有无线通信部件连接柔性表皮电子系统(费用)。通过它的灵活性,快速,灵敏响应受益,收费证明作为用于不同的移动医疗保健应用的简便的工具。

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