复合型乳液拓扑结构调控及其应用研究进展
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国家自然科学基金(21802025);广东省科学院专项项目(2019GDASYL-0302016);广州市科技计划项目(201804020004)


Research Progress on the Regulation and Application of Complex Emulsion Topological Structure
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National Natural Science Foundation of China (21802025);GDAS’ Project of Science and Technology De-velopment (2019GDASYL-0302016);The Science and Technology Program of Guangzhou (201804020004)

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    摘要:

    复合型乳液由于内相拥有多种不相溶的组分且可作为模板制备各向异性材料而备受关注,其特殊的结构和性能已成为科学研究热点,如何实现复合型乳液相行为及拓扑结构进行简单可控和批量化制备是该研究方向中的重点和难点。该文着重阐述了近期国内外对复合型乳液拓扑结构的调控方法,主要有微流体法、相分离法、一步高速剪切法及刺激响应调控等方法,并说明了不同调控方法的优势及弊端,目前关于该方面的综述侧重于阐述单个方法的研究进展并没有对不同方法的对比。利用简单、无污染、智能且能大批量制备的方法来调控复合型乳液是今后发展趋势。介绍了复合型乳液拓扑结构的调控在光学透镜、传感器、材料及生物医药等方面的应用

    Abstract:

    Complex emulsion has attracted much attention due to its incompatible components and can be used as a template to prepare anisotropic materials. It has become a new hotspot of research for its special structure and properties. It is key to develop new methods that can easily and mass produce complex emulsion with tunable morphology of microstructure. In this paper, the methods to control the topo-logical structure of complex emulsions at home and abroad were emphatically described, mainly in-cluding microfluidics, phase separation, one-step high-speed shearing and stimuli-responsive regula-tion, and the advantages and disadvantages of different control methods were explained. However, the current reviews focus on the research progress of individual methods and do not compare differ-ent methods. It is a developing trend that the method of controlling the topological structure is simple, pollution-free, intelligent and mass-produced. The application of the complex emulsion in optical lenses, sensors, materials and biomedicine were introduced.

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郭永顺,黄淋佳,贾康乐,麦裕良,文武,方岩雄.复合型乳液拓扑结构调控及其应用研究进展[J].精细化工,2020,37(5):0

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  • 收稿日期:2019-08-26
  • 最后修改日期:2019-10-15
  • 录用日期:2019-11-04
  • 在线发布日期: 2020-03-23
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