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A facile method for transparent carbon nanosheets heater based on polyimide

机译:基于聚酰亚胺的透明碳纳米片加热器的容易方法

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In this work, a novel film heater in nanometer-scale thickness based on catalyst-free and transfer-free carbon nanosheets (CNSs) with properties similar to graphene is fabricated. Here, poly(amic acid) (PAA), which is composed of several aromatic hydrocarbon rings, is used as the carbon precursor of CNS films. Altering the polymer concentration easily controls the morphological, optical, and electrical properties of the CNS films obtained by carbonization of PAA thin films. The CNS films with different thicknesses of 7.53–28.40 nm are simply prepared through spin-coating on a quartz substrate and post heat-treatment. Finally, their direct use as transparent film heaters is deeply investigated by considering electrical conductivity, temperature response rapidity, achievable maximum temperature, and electric power efficiency. For instance, an electrically conductive and optically transparent CNS film with 28.40 nm thickness exhibits excellent electric heating performance achieving well-defined steady-state maximum temperatures of 24–333 °C at low input electric power per unit film area of 0.027–1.005 W cm ~(?2) in a relatively short time of ~100 s.
机译:在这项工作中,制造基于催化剂和无转移碳纳米片(CNSS)的纳米级厚度的新型薄膜加热器制造,其具有与石墨烯类似的性质。这里,由几种芳族烃环组成的聚(酰胺酸)(PAA)用作CNS膜的碳前体。改变聚合物浓度容易控制通过Paa薄膜碳化获得的CNS膜的形态学,光学和电性能。通过在石英底物上通过旋涂和热处理后,简单地制备具有不同厚度的CNS膜。最后,通过考虑导电性,温度响应快速,可实现的最高温度和电力效率,深受其直接用作透明薄膜加热器。例如,具有28.40nm厚度的导电和光学透明的CNS膜在每单位薄膜面积为0.027-1.005W厘米的低输入电力下实现优异的电加热性能,实现了24-333°C的稳定稳态最大温度〜(?2)在〜100秒的相对较短的时间内。

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