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Conducting transparent thin films based on Carbon Nanotubes — Conducting Polymers

机译:基于碳纳米管导电聚合物进行透明薄膜

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The present work reports on the characterization and optimization of thin transparent and electrically conducting films (from 120 to 180 nm thick) based on single walled carbon nanotubes (CNT) and conducting polymers, polypyrrole (PPy) or polyaniline (PA). We obtained a number of different CNT-PPy doped with PTS or PF_6 and CNT-PA under different parameters (electrodeposition time, density current or voltage) and analyzed the required properties, electrical conductivity and transparency, and other significant properties: Raman Spectroscopy, and AFM, from which we can estimate the film thickness. The electrochemical conditions for the polymer thin film deposition were studied in order to improve their conductivity and transparency.Compared to the well known transparent conducting oxides like ITO, the best of our composite thin films are from 10 to 100 times less conductive and highly transparent. As a great possibility, these conducting films could be prepared on a flexible substrate with a continuous deposition procedure.
机译:本工作报告了基于单壁碳纳米管(CNT)和导电聚合物,聚吡咯(PPY)或聚苯胺(PA)的薄透明和导电薄膜(从120至180nm厚)的表征和优化。我们在不同参数(电沉积时间,密度电流或电压)下获得了多种不同的CNT-PY和CNT-PA,并分析所需的性质,导电性和透明度,以及其他显着性质:拉曼光谱,和AFM,我们可以从中估计膜厚度。研究了聚合物薄膜沉积的电化学条件,以改善它们的电导率和透明度。与众所周知的透明导电氧化物相似,我们最好的复合薄膜是导电且高度透明的10至100倍。作为一种很好的可能性,可以用连续沉积过程在柔性基板上制备这些导电膜。

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