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全氟离子聚合物溶胀膜的分子动力学模拟

Molecular dynamics simulation of swollen membrane of perfluorinated ionomer.

作者信息

Urata Shingo, Irisawa Jun, Takada Akira, Shinoda Wataru, Tsuzuki Seiji, Mikami Masuhiro

机构信息

Research Center, Asahi Glass Co., Ltd. (AGC), Yokohama, Kanagawa 221-8755, Japan.

出版信息

J Phys Chem B. 2005 Mar 10;109(9):4269-78. doi: 10.1021/jp046434o.

DOI:10.1021/jp046434o
PMID:16851491
Abstract

Molecular dynamics simulations of the swollen membrane of perfluorinated ionomer, which is composed of poly(tetrafluoroethylene) backbones and perfluosulfonic pendant side chains, have been undertaken to analyze the static and dynamic properties of the water and the side chain in the membrane. The calculations were carried out for four different water contents, 5, 10, 20 and 40 wt %, at 358.15 K and 0.1 MPa. The results are summarized as follows: (1) The sulfonic acid is the unique site to which water molecules can bind, and the other sites in the pendant side chain have no bound water even at high water concentration. (2) Sulfonic acids aggregate in the short range within 4.6-7.7 A despite the electrostatic repulsion between them. In such aggregates, a water molecule bridges two sulfonic acids. (3) Pendant side chains prefer to orient perpendicular to the hydrophilic/hydrophobic interface, and long-range correlation of side chain orientations is observed at 20 and 40 wt % water uptake membranes. (4) In a low water uptake membrane, the dynamics of water is substantially restricted due to strong attractive interactions with acidic sites. In contrast, at high water content, even the water locating near the sulfonic acid is relatively mobile. The short residence time of the bound water reveals that such water can frequently exchange position with relatively free water, which locates in the center of water cluster, in highly swollen membranes.

摘要

全氟离子聚合物的溶胀膜由聚四氟乙烯主链和全氟磺酸侧链组成,已进行分子动力学模拟以分析膜中水分子和侧链的静态及动态性质。计算在358.15 K和0.1 MPa条件下针对四种不同水含量(5、10、20和40 wt%)进行。结果总结如下:(1)磺酸基是水分子能够结合的唯一位点,即使在高水浓度下,侧链中的其他位点也没有结合水。(2)尽管磺酸基之间存在静电排斥,但它们在4.6 - 7.7 Å的短程内聚集。在这种聚集体中,一个水分子桥连两个磺酸基。(3)侧链倾向于垂直于亲水/疏水界面取向,在水吸收量为20 wt%和40 wt%的膜中观察到侧链取向的长程相关性。(4)在低水吸收膜中,由于与酸性位点的强吸引相互作用,水的动力学受到极大限制。相反,在高水含量下,即使位于磺酸基附近的水也相对可移动。结合水的短停留时间表明,在高度溶胀的膜中,这种水能够频繁地与位于水簇中心的相对自由的水交换位置。

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