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超分子凝胶的特性。

Characterization of supramolecular gels.

机构信息

Department of Chemistry, Zhejiang University, Hangzhou 310027, PR China.

出版信息

Chem Soc Rev. 2013 Aug 21;42(16):6697-722. doi: 10.1039/c3cs60080g.

Abstract

Supramolecular gels are a fascinating class of soft materials. Their gelators can self-assemble into nano- or micro-scale superstructures, such as fibers, ribbons, sheets and spheres in an appropriate solvent, thereby resulting in the formation of 3D networks. The dynamic and reversible nature of the non-covalent interactions that contribute to the formation of these network structures together gives these supramolecular gels the inherent ability to respond to external stimuli. However, the dynamic nature of supramolecular gels, which endows them with unique properties, makes their characterization diversified at the same time. Therefore, we present here a review summarizing various methods for characterizing supramolecular gels, including nuclear magnetic resonance spectroscopy, computational techniques, X-ray techniques, microscopy techniques, dynamic light scattering, thermal analysis, and rheology. Based on the gelation mechanisms and influencing factors of supramolecular gels, suitable and sufficient characterization methods should be carefully employed to make full use of their respective advantages to better investigate these materials.

摘要

超分子凝胶是一类引人入胜的软物质。它们的凝胶因子可以在适当的溶剂中自组装成纳米或微米尺度的超结构,如纤维、带状物、薄片和球体,从而形成 3D 网络。形成这些网络结构的非共价相互作用的动态和可逆性质赋予了这些超分子凝胶对外部刺激的固有响应能力。然而,超分子凝胶的动态性质使它们具有独特的性质,同时也使它们的特性多样化。因此,本文综述了各种表征超分子凝胶的方法,包括核磁共振波谱、计算技术、X 射线技术、显微镜技术、动态光散射、热分析和流变学。基于超分子凝胶的凝胶化机制和影响因素,应仔细选择合适和充分的表征方法,以充分利用各自的优势,更好地研究这些材料。

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