基于相分离法的微米级微球复合材料制备综述

A review on the preparation of micron-scale microsphere composites based on phase separation technology

  • 摘要: 微球复合材料是一类由多组分物质组成、可综合多种材料性质的微米级球状复合材料。此类材料兼具体积小、多结构形态的结构特点与选择性包覆、定向运输的物质特点,已在多个领域得到广泛应用。微球复合材料的组成与结构特性与其制备方法紧密相关,用于制备微球复合材料的相分离法具有相分离前驱体溶液的溶质溶剂易复合、相分离后微球易自发成形的特点。基于此方法可制备出多孔状、核壳状、洋葱状、Janus状、多凸起状、凹坑状、纤维状、双连续状、相反转状等形貌复合微球。相分离为微球带来的复合结构赋予其更广阔的应用场景。本文综述了基于传质、传热、光固化、溶胶凝胶反应等物理、化学方法诱导相分离发生的原理,总结了基于相分离方法制备的微球复合材料的成形结构与成形机制,并分析了各相分离方法的优势与不足。

     

    Abstract: Microsphere composites represent a class of micrometer-scale spherical composite materials composed of multi-component substances, capable of integrating the properties of various materials. This kind of materials has been widely applied across multiple fields due to their compact size, diverse structural morphologies, selective encapsulation capabilities, and directional transport functionalities. The composition and structural characteristics of microsphere composites are intrinsically linked to their preparation methods. The phase separation method, a key technique for fabricating such composites, is distinguished by the facile recombination of solutes and solvents in precursor solutions and the spontaneous formation of microspheres post-phase separation. Based on this method, a variety of microsphere composite structures can be prepared, including those with internal multiphase structure, core-shell, onion-like, Janus, multi-protuberant, dimpled, fibrous, bicontinuous and phase-reversed structures. Phase separation endows microspheres with composite structures, broadening their range of application scenarios. This paper reviews the principles of phase separation induced by physical and chemical methods such as mass transfer, heat transfer, photopolymerization, and sol-gel reactions. It summarizes the formation structures and mechanisms of microsphere composite materials prepared by phase separation methods and analyzes the advantages and limitations of each phase separation method.

     

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