首页> 外文会议>Liquid crystals XIV >Photoswitchable Gas Permeation Membranes Based on Azobenzene-Doped Liquid Crystals. II. Permeation-Switching Characterization Under Variable Volume and Variable Pressure Conditions
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Photoswitchable Gas Permeation Membranes Based on Azobenzene-Doped Liquid Crystals. II. Permeation-Switching Characterization Under Variable Volume and Variable Pressure Conditions

机译:基于偶氮苯掺杂液晶的可光开关气体渗透膜。二。可变体积和可变压力条件下的渗透转换特性

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摘要

Stimuli-responsive gas permeation membranes hold substantial potential for industrial processes as well as in analytical and screening applications. Such "smart" membrane systems, although prevalent in liquid mass-transfer manipulations, have yet to be realized for gas applications. We report our progress in developing gas permeation membranes in which liquid crystalline (LC) phases afford the active region of permeation. To achieve rapid and reversible switching between LC and isotropic permeation states, we harnessed the photomechanical action of mesogenic azobenzene dyes that can produce isothermal nematic-isotropic transitions. Both polymeric and low-molecular-weight LC materials were tested. Three different dye-doped LC mixtures with mesogenic azo dyes were infused into commercially available track-etched porous membranes with regular cylindrical pores (0.4 to 10.0 /an). Photoinduced isothermal phase changes in the imbibed material produced large and fully reversible changes in the permeability of the membrane to nitrogen with 5 s of irradiation at 2 mW/cm2. Using two measurement tools constructed in-house, the permeability of the photoswitched membranes was determined by both variable-pressure and variable-volume methods. Both the LC and photogenerated isotropic states demonstrate a linear permeability/pressure (ideal sorption) relationship, with up to a 16-fold difference in their permeability coefficients. Liquid crystal compositions can be chosen such that the LC phase is more permeable than the isotropic—or vice versa. This approach is the first system offering reversible tunable gas permeation membranes.
机译:刺激响应性气体渗透膜在工业过程以及分析和筛选应用中具有巨大潜力。尽管在液体传质操作中很普遍,但是这种“智能”膜系统对于气体应用尚未实现。我们报告了我们在开发气体渗透膜方面的进展,其中液晶(LC)相提供了渗透的活性区域。为了实现LC和各向同性渗透状态之间的快速和可逆切换,我们利用了能产生等温向列各向同性转变的介晶偶氮苯染料的光机械作用。聚合物和低分子量LC材料均经过测试。将三种不同的掺有介晶偶氮染料的染料掺杂的LC混合物注入市售的具有规则圆柱孔(0.4至10.0 / an)的轨道蚀刻多孔膜中。在2 mW / cm2的辐照下5 s,吸收材料中的光致等温相变会导致膜对氮的渗透率发生大而完全可逆的变化。使用内部构造的两个测量工具,通过可变压力和可变体积方法确定了光开关膜的渗透性。 LC和光生各向同性状态均显示出线性渗透率/压力(理想吸附)关系,其渗透率系数差异高达16倍。可以选择液晶成分,以使LC相比各向同性更具渗透性,反之亦然。这种方法是第一个提供可逆可调谐气体渗透膜的系统。

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  • 来源
    《Liquid crystals XIV》|2010年|p.77750G.1-77750G.10|共10页
  • 会议地点 San Diego CA(US)
  • 作者单位

    Laboratory for Laser Energetics, 250 East River Road, Rochester NY 14623 Dept. of Chemistry, University of Rochester, Rochester NY 14627;

    Laboratory for Laser Energetics, 250 East River Road, Rochester NY 14623;

    Laboratory for Laser Energetics, 250 East River Road, Rochester NY 14623;

    Laboratory for Laser Energetics, 250 East River Road, Rochester NY 14623;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 显示材料;
  • 关键词

    liquid crystal; membrane; azobenzene; stimuli-responsive material;

    机译:液晶;膜;偶氮苯刺激反应物质;

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