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具有固有微孔的超薄聚合物在液体中的溶胀程度如何?

How Much Do Ultrathin Polymers with Intrinsic Microporosity Swell in Liquids?

作者信息

Ogieglo Wojciech, Ghanem Bader, Ma Xiaohua, Pinnau Ingo, Wessling Matthias

机构信息

DWI - Leibniz Institute for Interactive Materials , Forckenbeckstr. 50, 52074 Aachen, Germany.

Advanced Membranes and Porous Materials Center (AMPMC), King Abdullah University of Science and Technology (KAUST) , Al-Jazri Building 4, Thuwal 23955-6900, Kingdom of Saudi Arabia.

出版信息

J Phys Chem B. 2016 Oct 6;120(39):10403-10410. doi: 10.1021/acs.jpcb.6b06807. Epub 2016 Sep 27.

Abstract

As synthetic membrane materials, polymers with intrinsic microporosity (PIMs) have demonstrated unprecedented permeation and molecular-separation properties. Here, we report the swelling characteristics of submicron-thick supported films of spirobisindane-based PIMs, PIM-1 and PIM-6FDA-OH, for six organic solvents and water using in situ spectroscopic ellipsometry. Surprisingly, PIMs swell significantly in most organic solvents, with swelling factors (SF = h/h) as high as 2.5. This leads to the loss of the ultrarigid character of the polymer and produces equilibrated liquid-like swollen films. Filling of the excess frozen-in fractional free volume with liquid was discovered next to swelling-induced polymer matrix dilation. Water hardly swells the polymer matrix, but it penetrates into the intrinsic microporous structure. This study is the first to provide fundamental swelling data for PIMs, leading to better comprehension of their permeation properties. Such an understanding is indispensable for applications such as solvent filtration, natural-gas separation, and ion retention in flow batteries.

摘要

作为合成膜材料,具有固有微孔性的聚合物(PIMs)展现出了前所未有的渗透和分子分离特性。在此,我们使用原位光谱椭偏仪报告了基于螺双茚满的PIMs(PIM-1和PIM-6FDA-OH)亚微米厚支撑膜在六种有机溶剂和水中的溶胀特性。令人惊讶的是,PIMs在大多数有机溶剂中显著溶胀,溶胀因子(SF = h/h)高达2.5。这导致聚合物超刚性特征的丧失,并产生平衡的类液体溶胀膜。在溶胀诱导的聚合物基体膨胀之后,发现了用液体填充过量的冻结分数自由体积的现象。水几乎不会使聚合物基体溶胀,但它会渗透到固有微孔结构中。本研究首次提供了PIMs的基本溶胀数据,有助于更好地理解其渗透特性。这种理解对于诸如溶剂过滤、天然气分离和液流电池中的离子保留等应用而言不可或缺。

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