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静电相互作用对胺功能化表面上组装的单壁碳纳米管网络的影响。

Influence of electrostatic interactions on spin-assembled single-walled carbon nanotube networks on amine-functionalized surfaces.

机构信息

Department of Chemical Engineering, Stanford University, Stanford, CA 94305, USA.

出版信息

ACS Nano. 2010 Feb 23;4(2):1167-77. doi: 10.1021/nn901388v.

Abstract

Preferential interactions between self-assembled monolayers (SAMs) terminated with amine functional groups and single-walled carbon nanotubes (SWNTs) were exploited to produce nanotube networks (SWNTnts) via spin coating. We provide insight into the mechanisms of this system while simultaneously demonstrating a facile approach toward controllable arrays of SWNTnts. The chirality, density, and alignment of the SWNTnt was heavily influenced by adsorption onto amine-functionalized surfaces that were exposed to varying pH solutions, as evidenced by atomic force microscopy (AFM) and Raman spectroscopy. This pH treatment altered the charge density on the surface, allowing for the examination of the contribution from electrostatic interaction to SWNT adsorption and SWNTnt characteristics. Secondary and tertiary amines with methyl substitutions were utilized to confirm that adsorption and chirality specific adsorption is largely due to the nitrogen lone pair, not the neighboring hydrogen atoms. Thus, the nature of adsorption is predominantly electrostatic and not due to van der Waals forces or localized polarization on the SWNTs. Moreover, the overall density of SWNTnts is different for the various amines, indicating that the accessibility to the lone pair electrons on the nitrogen plays a crucial role in SWNT adsorption. With greater understanding of the amine-SWNT interaction, these findings can be utilized to control SWNTnt formation for the precise integration into electronic devices.

摘要

利用自组装单分子层(SAM)末端的胺官能团与单壁碳纳米管(SWNTs)之间的优先相互作用,通过旋涂法制备纳米管网络(SWNTnts)。我们深入了解了该体系的机制,同时展示了一种易于控制 SWNTnts 阵列的方法。SWNTnt 的手性、密度和取向受到吸附到暴露于不同 pH 溶液的胺功能化表面的影响,这一点通过原子力显微镜(AFM)和拉曼光谱得到了证明。这种 pH 处理改变了表面的电荷密度,允许检查静电相互作用对 SWNT 吸附和 SWNTnt 特性的贡献。利用具有甲基取代基的仲胺和叔胺来证实,吸附和手性特异性吸附主要是由于氮孤对,而不是相邻的氢原子。因此,吸附的性质主要是静电的,而不是由于范德华力或 SWNTs 上的局部极化。此外,各种胺的 SWNTnts 的总体密度不同,表明氮上的孤对电子的可及性在 SWNT 吸附中起着关键作用。随着对胺-SWNT 相互作用的深入了解,这些发现可用于控制 SWNTnt 的形成,以便精确地集成到电子设备中。

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