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Electrical Conductivity Measurement of Transparent Conductive Films Based on Carbon Nanoparticles

机译:基于碳纳米粒子的透明导电膜的电导率测量

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Transparent conductive films are fundamental materials, currently used in several fields. Recently, due to their unique multifunctional properties, composite materials have started to be used in place of fluorine tin oxide and indium tin oxide in transparent conductive electrodes. However, the production of composite materials is still complicated and involves toxic chemicals. Through a simple and environmentally-friendly method, we synthesized new composite materials—conductive, transparent, and flexible films—that can be applied to the production of modern optoelectronic devices. An even dispersion of the nanoparticles was achieved by ultrasound excitation. Moreover, a series of morphological and structural investigations were conducted on the films by scanning and transmission electron microscopy, electrical conductivity, Raman spectroscopy, X-ray diffraction and testing their sheet resistance. The results indicated that the tested composite materials were ideal for film coating. The nanofluids containing multi-walled carbon nanotubes presented the highest electrical conductivity; nevertheless, all the composite nanofluids tended to have relatively high electrical conductivities. The flexible films with composite structures presented lower sheet resistances than those with single structures. Finally, the hybrid materials showed a higher transmittance.
机译:透明导电膜是目前在多个领域中使用的基础材料。近来,由于其独特的多功能特性,已经开始在透明导电电极中使用复合材料代替氟氧化锡和氧化铟锡。但是,复合材料的生产仍然很复杂,并且涉及有毒化学物质。通过一种简单且环保的方法,我们合成了可用于现代光电设备生产的新型复合材料-导电,透明和柔性薄膜。通过超声激发实现纳米颗粒的均匀分散。此外,通过扫描和透射电子显微镜,电导率,拉曼光谱,X射线衍射并测试其薄层电阻,对膜进行了一系列的形态和结构研究。结果表明,所测试的复合材料是薄膜包衣的理想选择。包含多壁碳纳米管的纳米流体具有最高的电导率。然而,所有复合纳米流体都倾向于具有相对较高的电导率。具有复合结构的柔性膜呈现出比具有单一结构的柔性膜更低的薄层电阻。最后,杂化材料显示出更高的透射率。

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