首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Tailoring both the surface pore size and sub-layer structures of PVDF membranes prepared by the TIPS process with a triple orifice spinneret
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Tailoring both the surface pore size and sub-layer structures of PVDF membranes prepared by the TIPS process with a triple orifice spinneret

机译:用三孔工艺制备的PVDF膜的表面孔径和亚层结构纵向,具有三孔喷丝器

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摘要

In this study, the surface and sub-layer structures of poly(vinylidene fluoride) (PVDF) membranes were effectively tailored by extruding different types of solvents at the outer layer of the polymer solution with a triple-orifice spinneret using the thermally induced phase separation (TIPS) process. The segregation of the diluent or PVDF chains to the interface between the extruded solvent and polymer solution was exploited to tailor the membrane surface structure. In contrast, the diffusion of extruded solvents having good compatibility with PVDF into the polymer solutions changed the phase separation mechanism and resulted in the formation of a novel composite-like structure (spherules connected by the bicontinuous network structure) in the sub-layer of the membrane. This membrane structure enhanced the permeation stability drastically. The membrane properties and structures are summarized based on the change in the competitive ternary interactions between the polymer, diluent, and extruded solvent, and could be used as a guide for selecting appropriate solvents to design and tailor membranes with desired structures and properties.
机译:在该研究中,通过使用热诱导的相分离通过挤出聚合物溶液的外层在聚合物溶液的外层挤出不同类型的溶剂来有效地定制聚(偏二氟乙烯)(PVDF)膜的表面和亚层结构(提示)过程。利用稀释剂或PVDF链对挤出溶剂和聚合物溶液之间的界面的偏析,以定制膜表面结构。相反,挤出溶剂的扩散具有良好的与PVDF进入聚合物溶液的相容性改变了相分离机构,并导致在子层中形成新的复合结构(由双连续网络结构连接的球形)膜。该膜结构急剧增强了渗透稳定性。膜性能和结构总结了聚合物,稀释剂和挤出溶剂之间的竞争性三元相互作用的变化,并且可以用作选择具有所需结构和性质的设计和定制膜的适当溶剂的引导件。

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    Kobe Univ Dept Chem Sci &

    Engn Ctr Membrane &

    Film Technol Nada Ku Rokkodaicho 1-1 Kobe Hyogo 6578501 Japan;

    Kobe Univ Dept Chem Sci &

    Engn Ctr Membrane &

    Film Technol Nada Ku Rokkodaicho 1-1 Kobe Hyogo 6578501 Japan;

    Kobe Univ Dept Chem Sci &

    Engn Ctr Membrane &

    Film Technol Nada Ku Rokkodaicho 1-1 Kobe Hyogo 6578501 Japan;

    Kobe Univ Dept Chem Sci &

    Engn Ctr Membrane &

    Film Technol Nada Ku Rokkodaicho 1-1 Kobe Hyogo 6578501 Japan;

    Kobe Univ Dept Chem Sci &

    Engn Ctr Membrane &

    Film Technol Nada Ku Rokkodaicho 1-1 Kobe Hyogo 6578501 Japan;

    Kobe Univ Dept Chem Sci &

    Engn Ctr Membrane &

    Film Technol Nada Ku Rokkodaicho 1-1 Kobe Hyogo 6578501 Japan;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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