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从宏观到纳米尺度的纳米石墨烯模板化

From macro- to nanoscopic templating with nanographenes.

作者信息

Pisula Wojciech, Kastler Marcel, Wasserfallen Daniel, Davies Richard J, García-Gutiérrez Mari-Cruz, Müllen Klaus

机构信息

Max-Planck-Institut für Polymerforschung, 55128 Mainz, Germany.

出版信息

J Am Chem Soc. 2006 Nov 15;128(45):14424-5. doi: 10.1021/ja0641960.

Abstract

A hexa-peri-hexabenzocoronene carrying six long, branched alkyl chains has been processed in nano- and macroscopic pore templates. An extraordinary self-organization of this material was observed within macroscopically large glass capillaries after cooling from the isotropic phase. Thereby, the columnar structures were long-range aligned along the capillary axis over several centimeters. This behavior was explained by the pronounced directional self-assembly of the molecules, whereby the curvature effect of the capillary was negligible. The processing in nanoscopic pores of an inorganic membrane yielded an improved supramolecular organization. It was possible to remove the inorganic template and to obtain bundles and single nanorods. The templating over different dimensions opens a variety of potential applications.

摘要

一种带有六条长支链烷基链的六并六苯并蔻已在纳米和宏观孔隙模板中进行了处理。从各向同性相冷却后,在宏观尺寸较大的玻璃毛细管内观察到了这种材料的非凡自组装现象。由此,柱状结构沿毛细管轴在几厘米的范围内实现了长程排列。这种行为可以通过分子明显的定向自组装来解释,其中毛细管的曲率效应可忽略不计。在无机膜的纳米孔中进行处理可产生改进的超分子结构。有可能去除无机模板并获得束状和单个纳米棒。在不同尺寸上进行模板化开辟了各种潜在应用。

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