Department of Applied Chemistry, Graduate School of Engineering, Kyushu University, Fukuoka, Japan.
J Am Chem Soc. 2011 Mar 2;133(8):2651-7. doi: 10.1021/ja109399f. Epub 2011 Feb 3.
Single-walled carbon nanotubes (SWNTs) have remarkable and unique electronic, mechanical, and thermal properties, which are closely related to their chiralities; thus, the chirality-selective recognition/extraction of the SWNTs is one of the central issues in nanotube science. However, any rational materials design enabling one to efficiently extract/solubilize pure SWNT with a desired chirality has yet not been demonstrated. Herein we report that certain chiral polyfluorene copolymers can well-recognize SWNTs with a certain chirality preferentially, leading to solubilization of specific chiral SWNTs. The chiral copolymers were prepared by the Ni(0)-catalyzed Yamamoto coupling reaction of 2,7-dibromo-9,9-di-n-decylfluorene and 2,7-dibromo-9,9-bis[(S)-(+)-2-methylbutyl]fluorene comonomers. The selectivity of the SWNT chirality was mainly determined by the relative fraction of the achiral and chiral side groups. By a molecular mechanics simulation, the cooperative interaction between the fluorene moiety, alkyl side chain, and graphene wall were responsible for the recognition/dissolution ability of SWNT chirality. This is a first example describing the rational design and synthesis of novel fluorene-based copolymers toward the recognition/extraction of targeted (n, m) chirality of the SWNTs.
单壁碳纳米管 (SWNTs) 具有显著且独特的电子、机械和热性能,这些性能与其手性密切相关;因此,SWNTs 的手性选择性识别/提取是纳米管科学的核心问题之一。然而,任何能够有效地提取/溶解具有所需手性的纯净 SWNT 的合理材料设计都尚未得到证明。本文报道了某些手性聚芴共聚物可以优先地对手性 SWNTs 进行良好的识别,从而溶解特定手性的 SWNTs。手性共聚物通过 Ni(0)催化的 Yamamoto 偶联反应由 2,7-二溴-9,9-二正十二烷基芴和 2,7-二溴-9,9-双[(S)-(+)-2-甲基丁基]芴共聚单体制备而成。SWNT 手性的选择性主要由非手性和手性侧基的相对分数决定。通过分子力学模拟,芴部分、烷基侧链和石墨烯壁之间的协同相互作用负责 SWNT 手性的识别/溶解能力。这是首例描述了基于芴的新型共聚物的合理设计和合成,用于识别/提取 SWNTs 的目标(n, m)手性。