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通过互补性半人工β-1,3-葡聚糖/碳纳米管复合材料的交替堆积制备分层碳纳米管组件。

Creation of hierarchical carbon nanotube assemblies through alternative packing of complementary semi-artificial beta-1,3-glucan/carbon nanotube composites.

作者信息

Numata Munenori, Sugikawa Kouta, Kaneko Kenji, Shinkai Seiji

机构信息

Department of Chemistry and Biochemistry, Graduate School of Engineering, Kyushu University, Fukuoka 819-0395, Japan.

出版信息

Chemistry. 2008;14(8):2398-404. doi: 10.1002/chem.200701205.

Abstract

Much attention has been focused on exploiting novel strategies for the creation of hierarchical polymer assemblies by the control of the assembling number or the relative location among neighboring polymers. We here propose a novel strategy toward the creation of "hierarchical" single-walled carbon nanotube (SWNT) architectures by utilizing SWNT composites with cationic or anionic complementary semi-artificial beta-1,3-glucans as "building blocks". These beta-1,3-glucans are known to wrap SWNTs helically, to create one-dimensional superstructural composites. If the cationic composite is neutralized by an anionic composite, a well ordered SWNT-based sheet structure was created. Transmission electron microscopy (TEM) observation revealed that this sheet structure is composed of highly-ordered fibrous assemblies of SWNTs. This suggests that the cationic and anionic composites are tightly packed through electrostatic interactions. Moreover, both of the final assembly structures are readily tunable by adjusting the cation/anion ratio. The self-assembling modulation of functional polymers is associated with the progress in ultimate nanotechnologies, thus enabling us to create numerous functional nanomaterials. We believe, therefore, that the present system will extend the frontier of SWNT research to assembly chemistry including "hierarchical" superstructures.

摘要

通过控制聚合物的组装数量或相邻聚合物之间的相对位置来开发用于构建分级聚合物组装体的新策略已受到广泛关注。在此,我们提出一种新策略,即利用与阳离子或阴离子互补半人工β-1,3-葡聚糖形成的单壁碳纳米管(SWNT)复合材料作为“构建单元”来构建“分级”单壁碳纳米管结构。已知这些β-1,3-葡聚糖能螺旋包裹SWNT,形成一维超结构复合材料。如果阳离子复合材料被阴离子复合材料中和,就会形成有序的基于SWNT的片状结构。透射电子显微镜(TEM)观察表明,这种片状结构由高度有序的SWNT纤维组装体组成。这表明阳离子和阴离子复合材料通过静电相互作用紧密堆积。此外,通过调节阳离子/阴离子比例,两种最终组装结构都易于调节。功能聚合物的自组装调控与最终纳米技术的进展相关,从而使我们能够制备大量功能纳米材料。因此,我们相信,本体系将把SWNT研究的前沿扩展到包括“分级”超结构在内的组装化学领域。

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