首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Novel crosslinked lyotropic liquid crystal materials based on acrylate-type gemini ammonium surfactant
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Novel crosslinked lyotropic liquid crystal materials based on acrylate-type gemini ammonium surfactant

机译:基于丙烯酸酯型双基尼铵表面活性剂的新型交联溶致液晶材料

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摘要

This manuscript describes a facile method to prepare a series of novel crosslinked gemini lyotropic liquid crystal (LLC) materials. In comparison with previously reported crosslinkable LLC monomers requiring lengthy, harsh and expensive synthetic protocols, herein this new acrylate-type LLC monomer can be conveniently prepared in two steps and is highly stable at ambient temperatures. This new LLC monomer predominantly forms lamellar lyotropic mesophase, and meanwhile when mixed with 17-22wt% water at 55-79 degrees C, it presents an unidentified X phase which is quite similar to bicontinuous cubic phase. The corresponding UV-crosslinked LLC membrane containing a mixture of LLC monomer, H2O, butyl rubber (BR) and a photo-initiator can retain the original mesophase and build hydrophilic nanochannels. To test the water permeability, the LLC/BR mixtures are further coated onto a polyethersulfone (PES)-supported membrane by hot-pressing and photo-crosslinking. The average water vapour flux of an X-phase LLC/BR-PES composite membrane is 630 +/- 50gm(-2)day(-1), which is higher than the performances of L-phase LLC/BR-PES composite membranes (310 +/- 20-510 +/- 40gm(-2)day(-1)). In comparison with previously reported corsslinked LLC membranes (200-440gm(-2)day(-1)), the water permeability properties of these novel membranes are highly competitive.
机译:该手稿描述了一种简便的方法来制备一系列新型的交联双子双晶溶致液晶(LLC)材料。与先前报道的需要冗长,苛刻和昂贵的合成方案的可交联LLC单体相比,本文中这种新的丙烯酸酯型LLC单体可以方便地分两步制备,并且在环境温度下高度稳定。这种新的LLC单体主要形成层状溶致中间相,同时在55-79摄氏度下与17-22wt%的水混合时,会呈现出一个未知的X相,与双连续立方相非常相似。包含LLC单体,H2O,丁基橡胶(BR)和光引发剂的混合物的相应的UV交联的LLC膜可以保留原始中间相并建立亲水性纳米通道。为了测试水渗透性,通过热压和光交联将LLC / BR混合物进一步涂覆到聚醚砜(PES)支撑的膜上。 X相LLC / BR-PES复合膜的平均水蒸气通量为630 +/- 50gm(-2)day(-1),高于L相LLC / BR-PES复合膜的性能(310 +/- 20-510 +/- 40gm(-2)day(-1))。与以前报道的corsslinked LLC膜(200-440gm(-2)day(-1))相比,这些新型膜的透水性能具有很高的竞争力。

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