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由杯[5]芳烃与C60之间的分子识别引导的超分子富勒烯聚合物和网络。

Supramolecular fullerene polymers and networks directed by molecular recognition between calix[5]arene and C60.

作者信息

Hirao Takehiro, Tosaka Masatoshi, Yamago Shigeru, Haino Takeharu

机构信息

Department of Chemistry, Graduate School of Science, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, 739-8526 (Japan).

出版信息

Chemistry. 2014 Dec 1;20(49):16138-46. doi: 10.1002/chem.201404328. Epub 2014 Oct 10.

Abstract

A biscalix[5]arene-C60 supramolecular structure was utilized for the development of supramolecular fullerene polymers. Di- and tritopic hosts were developed to generate the linear and network supramolecular polymers through the complexation of a dumbbell-shaped fullerene. The molecular association between the hosts and the fullerene were carefully studied by using (1) H NMR, UV/Vis absorption, and fluorescence spectroscopy. The formation of the supramolecular fullerene polymers and networks was confirmed by diffusion-ordered (1) H NMR spectroscopy (DOSY) and solution viscometry. Upon concentrating the mixtures of di- or tritopic hosts and dumbbell-shaped fullerene in the range of 1.0-10 mmol L(-1) , the diffusion coefficients of the complexes decreased, and the solution viscosities increased, suggesting that large polymeric assemblies were formed in solution. Scanning electron microscopy (SEM) was used to image the supramolecular fullerene polymers and networks. Atomic force microscopy (AFM) provided insight into the morphology of the supramolecular polymers. A mixture of the homoditopic host and the fullerene resulted in fibers with a height of (1.4±0.1) nm and a width of (5.0±0.8) nm. Interdigitation of the alkyl side chains provided secondary interchain interactions that facilitated supramolecular organization. The homotritopic host generated the supramolecular networks with the dumbbell-shaped fullerene. Honeycomb sheet-like structures with many voids were found. The growth of the supramolecular polymers is evidently governed by the shape, dimension, and directionality of the monomers.

摘要

一种杯[5]芳烃-C60超分子结构被用于超分子富勒烯聚合物的开发。开发了双位点和三位点主体,通过与哑铃形富勒烯的络合生成线性和网络超分子聚合物。通过(1)H NMR、紫外/可见吸收光谱和荧光光谱仔细研究了主体与富勒烯之间的分子缔合。通过扩散排序(1)H NMR光谱(DOSY)和溶液粘度测定法证实了超分子富勒烯聚合物和网络的形成。在将双位点或三位点主体与哑铃形富勒烯的混合物浓缩至1.0 - 10 mmol L(-1)范围内时,络合物的扩散系数降低,溶液粘度增加,这表明在溶液中形成了大型聚合物聚集体。使用扫描电子显微镜(SEM)对超分子富勒烯聚合物和网络进行成像。原子力显微镜(AFM)深入了解了超分子聚合物的形态。同型双位点主体与富勒烯的混合物产生了高度为(1.4±0.1) nm、宽度为(5.0±0.8) nm的纤维。烷基侧链的相互交错提供了二级链间相互作用,促进了超分子组织。同型三位点主体与哑铃形富勒烯生成了超分子网络。发现了具有许多空隙的蜂窝状片状结构。超分子聚合物的生长显然受单体的形状、尺寸和方向性控制。

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