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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Mono-dispersed ultra-long single-walled carbon nanotubes as enabling components in transparent and electrically conductive thin films
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Mono-dispersed ultra-long single-walled carbon nanotubes as enabling components in transparent and electrically conductive thin films

机译:单分散超长单壁碳纳米管可作为透明导电薄膜中的成分

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摘要

We report on a simple and practical method for creation of transparent and electrically conductive films by using ultra-long single-walled carbon nanotubes (SWCNTs) as the functioning elements. The ultra-long SWCNTs were ultimately dispersed into tubular levels for dispersion (denoted as mono-dispersion) in aqueous solutions by using glycocholate mixed with cholate as the dispersant. The resulting colloids were cast uniformly over the surface of flexible polyethylene terephthalate film through a wire-bar coating process. After washing by diluted nitric acid, the dispersants have been largely eliminated while the carbon nanotubes have been firmly retained on the surface of the film. These carbon nanotubes were finally transferred and permanently immobilized onto the surface of another piece of film with cellulose as the binder. Serial film samples each having different densities of the carbon nanotubes on the surface were prepared for studying the conductive mechanism. Film samples having densities around 30-tubes per mu m(2) were found to be capable of creating continuously interconnected carbon nanotube networks with a 92% transparency and a 286 Omega/sq resistivity through the formation of approximately 160 tube-to-tube junctions per mu m(2). These highly conductive and transparent films transfer electrons by the carbon nanotube networks with a slightly deformed tube-to-tube junction feature. (C) 2014 Elsevier Ltd. All rights reserved.
机译:我们报告了一种通过使用超长单壁碳纳米管(SWCNT)作为功能元素来创建透明和导电膜的简单实用方法。通过使用甘醇酸盐与胆酸盐混合作为分散剂,最终将超长SWCNT分散成管状,以便在水溶液中分散(称为单分散)。通过线棒涂布法将得到的胶体均匀地浇铸在柔性聚对苯二甲酸乙二醇酯薄膜的表面上。用稀硝酸洗涤后,分散剂已基本消除,而碳纳米管已牢固地保留在薄膜表面上。这些碳纳米管最终被转移并永久固定在另一片以纤维素为粘合剂的薄膜表面上。制备每个在表面上具有不同密度的碳纳米管的系列膜样品,以研究导电机理。发现密度大约为30根管/μm(2)的薄膜样品能够通过形成约160个管对管结来创建具有92%的透明度和286 Omega / sq电阻率的连续互连碳纳米管网络每平方米(2)。这些高导电性和透明性的膜通过碳纳米管网络传输电子,并具有轻微变形的管对管结特征。 (C)2014 Elsevier Ltd.保留所有权利。

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