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Novel strategy for diameter-selective separation and functionalization of single-wall carbon nanotubes

机译:单壁碳纳米管直径选择性分离和功能化的新策略

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摘要

The problem of separating single-wall carbon nanotubes (CNTs) by diameter and/or chirality is one of the greatest impediments toward the widespread application of these promising materials in nanoelectronics. In this paper, we describe a novel physical-chemical method for diameter-selective CNT separation that is both simple and effective and that allows up-scaling to large volumes at modest cost. Separation is based on size-selective noncovalent matching of an appropriate anchor molecule to the wall of the CNT, enabling suspension of the CNTs in solvents in which they would otherwise not be soluble. We demonstrate size-selective separation in the 1-2 nm diameter range using easily synthesized oligo-acene adducts as a diameter-selective molecular anchor. CNT field effect transistors fabricated from diameter-selected CNTs show markedly improved electrical properties as compared to nonselected CNTs.
机译:通过直径和/或手性分离单壁碳纳米管(CNT)的问题是这些有希望的材料在纳米电子学中广泛应用的最大障碍之一。在本文中,我们描述了一种用于直径选择CNT分离的新颖物理化学方法,该方法既简单又有效,并且可以以适度的成本扩大到大批量生产。分离基于适当的锚分子与CNT壁的尺寸选择性非共价匹配,从而使CNT悬浮在原本不溶于其中的溶剂中。我们展示了使用容易合成的低聚并苯加合物作为直径选择性分子锚的1-2 nm直径范围内的尺寸选择性分离。与未选择的CNT相比,由直径选择的CNT制成的CNT场效应晶体管显示出显着改善的电性能。

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