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含吡啶共聚物对大直径半导体单壁碳纳米管的选择分散。

Selective dispersion of large-diameter semiconducting single-walled carbon nanotubes with pyridine-containing copolymers.

机构信息

Institute of Nanotechnology, Karlsruhe Institute of Technology, D-76021, Karlsruhe, Germany; Present address: SPrAM/UMR 5819 (CEA, CNRS, UJF), CEA/INAC 17 rue des Martyrs, 38054, Grenoble, France.

出版信息

Small. 2014 Jan 29;10(2):360-7. doi: 10.1002/smll.201301295. Epub 2013 Aug 5.

DOI:10.1002/smll.201301295
PMID:23913806
Abstract

The purity of single-walled carbon nanotubes (SWNTs) is a key parameter for their integration in electronic, optoelectronic and photonic devices. Samples of pristine SWNTs are inhomogeneous in terms of electric behavior and diameter and contain a variety of amorphous carbon and catalyst residues. To obtain high performance devices, purification of SWNTs is required. Conjugated polymers have emerged as efficient solubilizing and sorting agents for small diameter SWNTs (HiPco tubes, 0.7 nm<Ø<1.1 nm). Nevertheless, reports on polymers able to efficiently sort large diameter SWNTs with Ø>1.1 nm are lacking. Several pyridine-containing copolymers were synthesized for this purpose and showed efficient and selective extraction of semiconducting large diameter SWNTs (PLV tubes, Ø>1.1 nm). High concentration and high purity suspensions are obtained without the use of ultracentrifugation, which gives an up-scaling potential of the method. The emission wavelength is in near infrared region around 1550 nm and fits with broadly used telecommunication wavelength window. The processes taking place at the interface were simulated by a newly designed hybrid coarse-grain model combining density functional theory and geometrical calculation to yield insights into the wrapping processes with an unprecedented level of details for such large diameter SWNTs.

摘要

单壁碳纳米管 (SWNTs) 的纯度是将其集成到电子、光电和光子器件中的关键参数。原始 SWNTs 样品在电性能和直径方面存在不均匀性,并且含有各种无定形碳和催化剂残留物。为了获得高性能器件,需要对 SWNTs 进行纯化。共轭聚合物已成为小直径 SWNTs(HiPco 管,0.7nm<Ø<1.1nm)的有效溶解和分类剂。然而,缺乏能够有效分离Ø>1.1nm 大直径 SWNTs 的聚合物的报道。为此目的合成了几种含吡啶的共聚物,它们显示出对半导体大直径 SWNTs(PLV 管,Ø>1.1nm)的有效和选择性提取。无需使用超速离心即可获得高浓度和高纯度的悬浮液,从而为该方法提供了扩大规模的潜力。发射波长在近红外区域约 1550nm 处,与广泛使用的电信波长窗口相匹配。通过新设计的混合粗粒度模型模拟了界面上发生的过程,该模型结合了密度泛函理论和几何计算,以提供对这种大直径 SWNTs 的包装过程的前所未有的细节洞察。

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