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Flexible transparent film heaters using a ternary composite of silver nanowire, conducting polymer, and conductive oxide

机译:使用银纳米线,导电聚合物和导电氧化物的三元复合材料柔性透明薄膜加热器

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Scientific and technological advances in transparent conductive electrodes improve the heating performance of flexible transparent film heaters (TFHs), which can be utilized for various applications as defrosters and heaters. To achieve high performance as well as practical TFHs, several conditions, such as high optical transmittance, low electrical resistance, heating uniformity, and operational stability in various environmental conditions should be satisfied. However, due to the trade-offs between optical transmittance and electrical resistance, it is not easy to fulfill all the requirements concurrently. Here we report flexible TFHs using a ternary composite of silver nanowire (AgNW), conducting polymer ( i.e. , poly[3,4-ethylenedioxythiophene]:polystyrene sulfonate [PEDOT:PSS]), and a thin conductive oxide ( i.e. , indium tin oxide [ITO]) layer, exhibiting higher performance in terms of the maximum heating temperature (>110 °C), operational stability, mechanical flexibility, and optical transmittance (95% at 550 nm), compared to pristine AgNW-based TFHs. We also demonstrated the stable operation of the AgNW–PEDOT:PSS/ITO TFHs soaked in water, showing excellent environmental stability. To analyse the fundamental mechanisms for the improved performance of the AgNW–PEDOT:PSS/ITO TFHs, we investigated the progress of joule heating using a device simulator, and found that the improvement originated not only from reduced electrical resistance but also from enhanced heat dissipation with PEDOT:PSS and ITO. We anticipate that our analysis and results will be helpful for further development of practical flexible TFHs.
机译:透明导电电极的科技进步改善了柔性透明薄膜加热器(TFHS)的加热性能,可用于各种应用作为除霜器和加热器。为了实现高性能以及实用的TFH,应满足几种条件,例如高光学透射率,低电阻,加热均匀性以及各种环境条件的操作稳定性。但是,由于光透射率和电阻之间的权衡,并不容易地满足所有要求。在这里,我们使用银纳米线(AgNW)的三元组合,导电聚合物(即,聚苯乙二醇酯[PEDOT:PSS])和薄导电氧化物(即,氧化铟锡氧化铟锡(即) [ITO])层,在最大加热温度(> 110°C),操作稳定性,机械柔韧性和光学透射率(在550nm处为95%),与基于原始的基于agnW的TFHs的TFHS相比,在较高的性能下表现出更高的性能。我们还证明了Agnw-PEDOT的稳定运行:PSS / ITO TFHS浸泡在水中,显示出优异的环境稳定性。要分析Agnw-PEDOT的改进性能的基本机制:PSS / ITO TFHS,我们使用装置模拟器调查了焦耳加热的进展,发现改善不仅从降低的电阻降低而且来自增强的散热带PEDOT:PSS和ITO。我们预计我们的分析和结果将有助于进一步发展实际灵活的TFHS。

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