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首页> 外文期刊>Journal of Membrane Science >Fundamental studies of novel inorganic-organic charged zwitterionic hybrids - 2. Preparation and characterizations of hybrid charged zwitterionic membranes
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Fundamental studies of novel inorganic-organic charged zwitterionic hybrids - 2. Preparation and characterizations of hybrid charged zwitterionic membranes

机译:新型无机-有机带电两性离子杂化物的基础研究-2.混合带电两性离子膜的制备和表征

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A series of novel inorganic-organic hybrid charged zwitterionic membranes were successfully synthesized via sol-gel process of hybrid precursor. The hybrid precursor was obtained by a reaction of 3-glycidoxypropyltrimethoxysilane (GPTMS) with N-[3-(trimethoxysilyl) propyl] ethylene diamine (TMSPEDA), and then reacted with gamma-butyrolactone (gamma-BL) to create ion pairs in the polymer. The membrane properties were characterized through membrane potential, water content and piezodialysis measurements. The membrane potential against elapsed time revealed that both the amount of ionic charge sites and dip-coating times could highly impact the membrane characteristics. The membrane potential trends with pH values exhibited that the isoelectric point (IEP) was about pH 6.4 for membranes coated one time, while they also showed negative charge behaviors for membranes coated two times. The survey of water content indicated that water content was greatly affected by pH values. Piezodialysis measurements clearly showed that the conductivity of permeation solutions decreased with the elevating negative charge sites in membranes. The above results could be well explained based on a theoretical model derived by Tanioka et al. [Polymer 38 (1997) 4931-4934] for weak amphoteric membranes. (c) 2004 Elsevier B.V. All rights reserved.
机译:通过杂化前驱体的溶胶-凝胶法成功合成了一系列新型的无机-有机杂化带电两性离子膜。杂合前驱物是通过3-环氧丙氧基丙基三甲氧基硅烷(GPTMS)与N- [3-(三甲氧基甲硅烷基)丙基]乙二胺(TMSPEDA)反应获得的,然后与γ-丁内酯(γ-BL)反应生成离子对。聚合物。通过膜电位,水含量和压电渗析测量来表征膜性质。膜电位对经过时间的影响表明,离子电荷位点的数量和浸涂时间都可以极大地影响膜的特性。随pH值变化的膜电势趋势表明,一次涂覆的膜的等电点(IEP)约为pH 6.4,而对于两次涂覆的膜,它们也表现出负电荷行为。含水量调查表明,含水量受pH值的影响很大。压电渗析测量清楚地表明,渗透溶液的电导率随着膜中负电荷位点的升高而降低。基于Tanioka等人得出的理论模型可以很好地解释上述结果。 [Polymer 38(1997)4931-4934]用于弱两性膜。 (c)2004 Elsevier B.V.保留所有权利。

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