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首页> 外文期刊>Journal of Colloid and Interface Science >Tannic acid modified graphene/CNT three-dimensional conductive network for preparing high-performance transparent flexible heaters
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Tannic acid modified graphene/CNT three-dimensional conductive network for preparing high-performance transparent flexible heaters

机译:用于制备高性能透明柔性加热器的单宁酸改性石墨烯/ CNT三维导电网络

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In this paper, the eco-friendly plant polyphenol, tannic acid (TA) was demonstrated as a non-covalent modifier for carbon nanotubes (CNTs), as well as a stripping medium to achieve exfoliated graphite to graphene by microfluidization. High-performance transparent flexible heater (TFH) with an embedded structure had been successfully fabricated by integrating conductive nanocomposites (TA-functionalized grapheme/TA-functionalized CNT/PEDOT:PSS; TG/TCNT/PEDOT) into waterborne polyurethane (WPU) film. Such a film exhibited favorable optical transmittance and sheet resistance (T = ca. 80% at 550 nm, R-s = 62.5 Omega/sq.), low root mean square (rms) roughness (approximately 0.37 nm), excellent adhesion and mechanical stability (the sheet resistance remained almost constant after 1000 bending cycle test for the bending radius of 10 mm), which are ideal as transparent heaters with high thermal efficiency. For TG/TCNT/PEDOT-WPU TFHs, the temperature increased rapidly and reached a steady state within 20 s with the maximum temperature reached to 116 degrees C, when the applied voltage was 20 V. Moreover, no variation in temperature was observed after the repeated heating-cooling tests and long-time stability test, indicating that TG/TCNT/PEDOT-WPU TCFs can be used as high performance TFHs. These TFH's are expected to be suitable for vehicle defrosting, smart windows, portable heating, smart wearable devices, etc. (C) 2020 Elsevier Inc. All rights reserved.
机译:本文通过微流体将环芳酸(Ta)作为非共价改性剂,作为碳纳米管(CNT)的非共价改性剂,以及通过微流体来实现剥离的石墨,以使剥离介质实现剥离介质。通过将导电纳米复合材料(TA官能化的石墨孔/ TA-官能化CNT / PEDOT / PESS; TG / TCNT / PEDOT)集成到水性聚氨酯(WPU)膜中,通过将具有嵌入式结构的高性能透明柔性加热器(TFH)成功制造。这种薄膜表现出良好的光学透射率和薄层电阻(T = Ca.80%,在550nm,Rs = 62.5ω/ Sq。),低根均线(RMS)粗糙度(约0.37nm),优异的粘附性和机械稳定性(在弯曲半径为10mm的1000弯曲循环试验后,薄层电阻几乎恒定,这是具有高热效率的透明加热器的理想选择。对于TG / TCNT / PEDOT-WPU TFHS,当施加的电压为20V时,温度迅速增加并达到20秒内的稳态,最高温度达到116摄氏度。此外,在施加电压之后没有观察到温度的变化反复加热冷却测试和长时间稳定性测试,表明TG / TCNT / PEDOT-WPU TCF可用作高性能TFHS。这些TFH预计适用于车辆除霜,智能窗户,便携式加热,智能可穿戴设备等(C)2020 Elsevier Inc.保留所有权利。

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