论文标题

水凝胶膜中的聚合物添加剂大型和非线性渗透性扩增

Large and non-linear permeability amplification with polymeric additives in hydrogel membranes

论文作者

Eddine, Malak Alaa, Belbekhouche, S., de Chateauneuf-Randon, Sixtine, Salez, Thomas, Kovalenko, Artem, Bresson, Bruno, Monteux, C.

论文摘要

亲水性和多孔材料的水凝胶最近已成为过滤应用的有前途的系统。在我们的研究中,我们通过在有光学剂的情况下的聚(乙二醇)二丙烯酸酯(PEGDA)(PEGDA)(PEGDA)(PEGDA)(PEGDA)和大型聚(PEG)(PEG)链的混合物来制备水凝胶膜。我们发现,这种自由钉链的这种添加可引起大量且非线性的渗透性。实际上,通过更改添加的钉链的含量,我们在两个数量级上获得了水凝胶水渗透性的变化。当PEG浓度等于其临界重叠浓度C*时,获得膜的最高水通透性值。此外,我们发现通过膜的水流速随压力而异。当施加的压力导致孔的压缩时,我们将此结果与膜的可变形性联系起来。这项研究为设计具有受控渗透性的柔性水凝胶膜的设计提供了新的观点,并在水处理和生物序列中应用。

Hydrogels which are hydrophilic and porous materials have recently emerged as promising systems for filtration applications. In our study, we prepare hydrogel membranes by the photopolymerization of a mixture of poly (ethylene glycol) diacrylate (PEGDA) and large poly(ethylene glycol) (PEG) chains of 300 000 g.mol-1 in the presence of a photoinitiator. We find that this addition of free PEG chains induces a large and non-linear increase of the water permeability. Indeed, by changing the content of PEG chains added, we obtain variations of the hydrogel water permeability over two orders of magnitude. The highest water permeability values are obtained for the membranes when the PEG concentration is equal to its critical overlap concentration C*. Moreover, we find that the flow rate of water through the membranes varies non-linearly with the pressure. We relate this result to the deformability of the membranes as the applied pressure leads to a compression of the pores. This study provides new perspectives for the design of flexible hydrogel membranes with controlled permeability and their application in water treatment and bioseparation.

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