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The effect of amine protonation on the electrical properties of spin-assembled single-walled carbon nanotube networks

机译:胺质子化对自组装单壁碳纳米管网络电性能的影响

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Amine-terminated self-assembled monolayers (SAMs) have been shown to selectively adsorb semiconducting single-walled carbon nanotubes (sc-SWNTs). Previous studies have shown that when deposited by spin coating, the resulting nanotube networks (SWNTnts) can be strongly influenced by the charge state of the amine (primary, secondary, and tertiary). When the amine surfaces were exposed to varying pH solutions, the conductivity and overall quality of the resulting fabricated networks were altered. Atomic force microscopy (AFM) topography had shown that the density of the SWNTnts was reduced as the amine protonation decreased, indicating that the electrostatic attraction between the SWNTs in solution and the surface influenced the adsorption. Simultaneously, μ-Raman analysis had suggested that when exposed to more basic conditions, the resulting networks were enhanced with sc-SWNTs. To directly confirm this enhancement, Ti/Pd contacts were deposited and devices were tested in air. Key device characteristics were found to match the enhancement trends previously observed by spectroscopy. For the primary and secondary amines, on/off current ratios were commensurate with the Raman trends in metallic contribution, while no trends were observed on the tertiary amine (due to weaker interactions). Finally, differing SWNT solution volumes were used to compensate for adsorption differences and yielded identical SWNTnt densities on the various pH-treated samples to eliminate the influence of network density. These results further the understanding of the amine-SWNT interaction during the spin coating process. Overall, we provide a convenient route to provide SWNT-based TFTs with highly tunable electronic charge transport through better understanding of the influence of these specific interactions.
机译:胺封端的自组装单分子膜(SAMs)已显示选择性吸附半导体单壁碳纳米管(sc-SWNTs)。先前的研究表明,当通过旋涂沉积时,所得的纳米管网络(SWNTnts)会受到胺的电荷状态(伯,仲和叔)的强烈影响。当胺表面暴露于变化的pH溶液中时,所制得的网络的电导率和整体质量都会改变。原子力显微镜(AFM)形貌表明,随着胺的质子化程度的降低,SWNTnt的密度降低,这表明溶液和表面之间的SWNT之间的静电吸引影响了吸附。同时,μ-拉曼分析表明,当暴露于更基本的条件下时,sc-SWNTs增强了所得网络。为了直接确认这种增强,沉积了Ti / Pd触点并在空气中测试了器件。发现关键器件特性与先前通过光谱法观察到的增强趋势相匹配。对于伯胺和仲胺,开/关电流比与金属贡献的拉曼趋势相对应,而叔胺没有观察到趋势(由于相互作用较弱)。最后,使用不同的SWNT溶液体积来补偿吸附差异,并在各种pH处理的样品上产生相同的SWNTnt密度,以消除网络密度的影响。这些结果进一步了解了旋涂过程中胺与SWNT的相互作用。总体而言,我们通过更好地了解这些特定相互作用的影响,为基于SWNT的TFT提供高度可调的电子电荷传输提供了一条便捷的途径。

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