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首页> 外文期刊>ACS nano >Using nitrile functional groups to replace amines for solution-deposited single-walled carbon nanotube network films
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Using nitrile functional groups to replace amines for solution-deposited single-walled carbon nanotube network films

机译:使用腈官能团代替胺来沉积溶液沉积的单壁碳纳米管网络薄膜

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Figure Persented: Amine-terminated self-assembled monolayers (SAMs) can be utilized to selectively adsorb semiconducting single-walled carbon nanotubes (S-SWNTs), but are not ideal. Formation of these monolayer films from silanes can be dramatically influenced by atmospheric and other processing conditions, resulting in poor-quality SAMs or irreproducible results. The surface sorting method of fabricating these semiconducting nanotube networks (SWNTnts) can become ineffective if the functionalized surface is not smooth with high amine density. However, by replacing the amine with a nitrile group, SAM formation can be made more controllable and reproducible. Upon SWNT deposition, the nitrile group was found to not only adsorb higher density SWNTnts but also sort the nanotubes efficiently, as shown by micro-Raman spectroscopy. Upon testing these SWNTnts for device performance, these thin-film transistors (TFTs) were also found to yield higher quality devices than those fabricated on amine surfaces. Overall, these results expand the applicability of surface sorting and SWNT adsorption to other organic functionalities for nanotube separation. This report provides an outline of the merits and characterization of using the nitrile functional group for the separation and adsorption of SWNTs and its integration in network TFTs.
机译:可能的图:胺端接的自组装单分子层(SAMs)可用于选择性吸附半导体单壁碳纳米管(S-SWNTs),但并不理想。由硅烷形成的这些单层膜会受到大气和其他加工条件的极大影响,从而导致SAM的质量较差或结果无法再现。如果功能化的表面在高胺密度下不光滑,则制造这些半导体纳米管网络(SWNTnt)的表面分选方法可能会失效。但是,通过用腈基取代胺,可以使SAM的形成更加可控和可重现。如微拉曼光谱法所示,在SWNT沉积时,发现腈基不仅吸附较高密度的SWNTnt,而且有效地分选了纳米管。通过测试这些SWNTnt的器件性能,还发现这些薄膜晶体管(TFT)的器件质量比在胺表面上制造的器件更高。总体而言,这些结果将表面分选和SWNT吸附的应用范围扩展到用于纳米管分离的其他有机功能。该报告概述了使用腈官能团分离和吸附单壁碳纳米管及其在网络TFT中的集成的优缺点和特点。

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