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Permeability and diffusion coefficients of single methyl lactate enantiomers in Nafion (R) and cellophane membranes measured in diffusion cell

机译:在扩散池中测量的单个乳酸甲酯对映体在Nafion(R)和玻璃纸膜中的渗透性和扩散系数

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A two-compartment horizontal diffusion cell of own construction was used to measure the permeability and diffusion coefficients for the test system toluene in low density polyethylene (LDPE) and for chiral D- and L-methyl lactates in Nafion (R) and cellophane. The solvent was chosen such that it was not absorbed in the membrane. The evaluation process was developed to include the accumulation of the solute in the membrane or the change in the membrane thickness. There is a significant difference between the transport and sorption of methyl lactates in Nafion (R) and cellophane, respectively. The methyl lactate enantiomers show a comparable relative difference (50% approximately) in the case of the mass sorption and permeability coefficient values in Nafion (R) and therefore very similar values of diffusion coefficients, but a tenfold higher permeability coefficient of one enantiomer in comparison with the second one in cellophane while sorption coefficient is, again, different by 50% approximately in this case resulting in fifteenfold higher diffusion coefficient of one enantiomer. Furthermore, there is an opposite difference between the mass sorption and swelling of the membrane in the case of methyl lactate enantiomers in Nafion (R) : D-methyl lactate shows a higher mass sorption but lower areal swelling compared with the results of L-methyl lactate in Nafion (R) in the case of dilute solutions. A possible explanation for this fact is that D-methyl lactate fits like a puzzle piece into Nafion's secondary or primary structure and that L-methyl lactate molecules cause more extensive stretching of polymer backbones due to specific force actions. Despite of the observed chiral membrane properties, chiral resolution of racemic mixture of methyl lactates was not reached. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用具有自身结构的两室水平扩散池来测量低密度聚乙烯(LDPE)中测试系统甲苯以及Nafion(R)和玻璃纸中手性D-和L-甲基乳酸的渗透性和扩散系数。选择溶剂以使其不被膜吸收。开发了评估过程,以包括膜中溶质的积累或膜厚度的变化。分别在Nafion(R)和玻璃纸中,乳酸甲酯的运输和吸附之间存在显着差异。在Nafion(R)的质量吸附和渗透系数值的情况下,乳酸甲酯对映异构体显示出可比较的相对差异(大约50%),因此扩散系数的值非常相似,但相比之下,一种对映异构体的渗透系数要高十倍在玻璃纸中,第二种对映体的吸附系数又相差约50%,这导致一种对映体的扩散系数提高了15倍。此外,在Nafion(R)中的乳酸甲酯对映异构体的情况下,膜的质量吸附和溶胀之间存在相反的差异:与L-甲基的结果相比,乳酸D-甲基酯显示出更高的质量吸附但面积溶胀更低稀溶液中Nafion(R)中的乳酸。对此事实的可能解释是,乳酸D-甲基乳酸就像拼图一样适合Nafion的二级或一级结构,而乳酸L-甲基乳酸分子由于特定的作用力而导致聚合物主链更广泛的拉伸。尽管观察到手性膜性质,但未达到乳酸甲酯的外消旋混合物的手性拆分。 (C)2015 Elsevier B.V.保留所有权利。

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