摘要:
从介观结构角度综述了超分子凝胶晶体网络结构的形成机理、结构特性对宏观性能的影响以及超分子凝胶的设计与调控,系统总结了超分子凝胶的表征方法。超分子凝胶的性能由层级结构决定,介观结构可大幅提高材料的宏观性能,其结构与性能可以通过四个因素相关联:拓扑结构,相关长度,对称性/有序性和晶体网络间的结合力。基于对超分子凝胶的介观概念更深、更新的理解,该类材料的研究和开发将被推向新的阶段。
Abstract:
From the perspective of mesoscale, the formation mechanism of crystal network structure of supramolecular gel, the influence of structure on macroscopic properties, and the design and control of supramolecular gels are reviewed. Crystal network is a key character of the hierarchical structure of the gel, the formations of the basic and multi-level crystal networks are based on the crystal nucleation and growth. The engineering and controlling of the gel structure can be implemented by various stimuli, such as additives, sonication, seeding, and thermodynamic driving force, which leads to a controllable performance of the gel. In addition, the methods of characterizing supramolecular gels are systematically summarized, such as, rheology, atomic force microscope, scanning tunnel microscope, scanning electron microscope, transmission electron microscope, polarizing optical microscope, X-ray diffraction, small-angle X-ray scattering, small-angle neutron scattering, nuclear magnetic resonance spectroscopy, dynamic light scattering etc. Supramolecular gel performance is determined by the hierarchy mesoscopic structures, which can significantly improve the properties of the material. Four factors can be correlated to the structure and performance of material: topology, correlation length, symmetry/ordering, and strength of association of crystal networks. According to the more in-depth understanding of mesoscopic supramolecular gels, the research and development of such a material will be pushed to a new stage.