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首页> 外文期刊>Separation and Purification Technology >Gas separation properties of siloxane/polydimethylsiloxane hybrid membrane containing fluorine
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Gas separation properties of siloxane/polydimethylsiloxane hybrid membrane containing fluorine

机译:含氟硅氧烷/聚二甲基硅氧烷杂化膜的气体分离特性

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摘要

A cross-linking agent containing silicon-hydrogen bond and trimethoxylsilicon groups was synthesized by silicon-hydrogen addition reaction. Based on a convenient and mild sol-gel process as well as cross-linking reaction, a siloxane/polydimethylsiloxane (PDMS) hybrid membrane containing fluorinated side-chains was also prepared by using 13-fluorinated triethoxysilane and PDMS containing vinyl group as matrix materials. The chemical structure, microstructure and mechanical property of the hybrid membrane were characterized. The effects of gas pressure difference, temperature and fluorine content on permselectivity of the hybrid membrane were investigated. The results showed that the membrane had better membrane-forming and high permeability as well as selectivity than normal PDMS membranes. The oxygen permeability coefficient was 602 Barrer and oxygenitrogen separation factor was up to 3.47. The permeation properties of the hybrid membrane fluorinated are higher obviously than those of Robeson's upper bound and of unfluorinated PDMS membrane. Both a high permeability and a high selectivity of the hybrid membrane may be attributed to the introduction of fluorine atom into PDMS membrane, cross-linking network of molecule structure and mild sol-gel process.
机译:通过硅-氢加成反应合成了包含硅-氢键和三甲氧基硅基的交联剂。基于方便和温和的溶胶-凝胶工艺以及交联反应,还通过使用13个氟化三乙氧基硅烷和含乙烯基的PDMS作为基质材料,制备了含氟侧链的硅氧烷/聚二甲基硅氧烷(PDMS)杂化膜。表征了杂化膜的化学结构,微观结构和力学性能。研究了气体压力差,温度和氟含量对杂化膜渗透选择性的影响。结果表明,该膜具有比普通PDMS膜更好的成膜性,高渗透性和选择性。氧气渗透系数为602 Barrer,氧气/氮气分离系数高达3.47。氟化杂化膜的渗透性能明显高于Robeson上限和未氟化PDMS膜。杂化膜的高渗透性和高选择性都可以归因于将氟原子引入PDMS膜,分子结构的交联网络和温和的溶胶-凝胶过程。

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