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Uniform percolation of inkjet-printed polymer-semiconductor-wrapped carbon nanotube networks by blending with insulating polymer

机译:通过与绝缘聚合物共混,使喷墨印刷的聚合物-半导体包裹的碳纳米管网络均匀渗透

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摘要

The enhanced performance uniformity of thin-film transistors (TFTs) fabricated by inkjet printing of polymer-semiconductor-wrapped single-walled carbon nanotube (PSC/SWCNT) networks blended with an insulating polymer binder was investigated. The inkjet-printed PSC/SWCNT network TFTs exhibited varied device performance with a field-effect mobility of 6.15 +/- 6.75 cm(2)/V.s; the inkjet-printed TFTs fabricated using the poly(methyl methacrylate) (PMMA)-blended PSC/SWCNT layer as a channel exhibited relatively uniform device performance, with a field-effect mobility of 7.57 +/- 3.32 cm(2)/V.s. This notable difference in device performance uniformity is attributed to the blended PMMA, which prevented the PSC/SWCNTs from forming random aggregates and facilitated their uniform percolation when they were inkjet-printed. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了通过喷墨印刷与绝缘聚合物粘合剂共混的聚合物半导体包裹的单壁碳纳米管(PSC / SWCNT)网络的薄膜晶体管(TFT)的增强的性能均匀性。喷墨印刷的PSC / SWCNT网络TFT表现出不同的器件性能,场效应迁移率为6.15 +/- 6.75 cm(2)/V.s;使用聚甲基丙烯酸甲酯(PMMA)共混的PSC / SWCNT层作为沟道制造的喷墨印刷TFT表现出相对均匀的器件性能,场效应迁移率为7.57 +/- 3.32 cm(2)/V.s。器件性能均匀性的显着差异归因于共混的PMMA,这可防止PSC / SWCNT形成随机聚集体,并在喷墨打印时促进其均匀渗滤。 (C)2016 Elsevier B.V.保留所有权利。

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