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Nanophase structure and diffusion in swollen perfluorosulfonate ionomer: An NMR approach

机译:溶胀的全氟磺酸离聚物的纳米相结构和扩散:NMR方法

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Fluorine-19 NMR was used to study the structure and mobility of the perfluorosulfonate ionomer Nafion (Dupont trademark) in the presence of dimethyl methylphosphonate (DMMP). Fluorine-19 resonances arising from the ionomeric side chain narrowed rapidly with increasing DMMP content while the resonances arising from the perfluoroethylene backbone units remained broad. The plasticization of the side chains indicates that the DMMP is primarily associated with this structural unit which forms its own nanophase in Naflon. To further characterize the morphological structure, fluorine-19 spin diffusion experiments between the side chain and backbone resonances were performed. At low DMMP content, swelling of the pendant group domain is observed while at higher concentrations an unusual change in the spin diffusion indicates the development of a new morphology consisting of larger domains associated with the pendant group plus DMMP. To augment information on this system, proton pulse field gradient experiments were performed as a function of concentration and temperature to obtain DMMP self-diffusion constants. In the same concentration range where morphological change occurred, there was a rapid rise in translational mobility of the DMMP. This reflects the influence of the new larger domains which allow longer range motion of DMMP with fewer obstructions from the backbone domains which are relatively impermeable to DMMP. A fraction of the smaller domains originally present in dry Naflon remain even at high levels of DMMP, indicating an inability of all of the Nafion to undergo the morphological transition to the larger domains. [References: 14]
机译:在二甲基甲基膦酸酯(DMMP)存在下,使用Fluorine-19 NMR研究全氟磺酸离聚物Nafion(Dupont商标)的结构和迁移率。离子交联侧链引起的氟19共振随着DMMP含量的增加而迅速收窄,而全氟乙烯主链单元引起的共振仍然很宽。侧链的增塑表明DMMP主要与该结构单元相关联,该结构单元在Naflon中形成了自己的纳米相。为了进一步表征形态结构,在侧链和骨架共振之间进行了氟19自旋扩散实验。在低DMMP含量下,观察到侧基结构域的溶胀,而在较高浓度下,自旋扩散的异常变化表明出现了新的形态,该新形态由与侧基基团和DMMP相关的较大结构域组成。为了增加有关该系统的信息,质子脉冲场梯度实验作为浓度和温度的函数进行,以获得DMMP自扩散常数。在发生形态变化的相同浓度范围内,DMMP的翻译迁移率迅速上升。这反映了新的较大域的影响,该域允许DMMP进行更长距离的运动,而来自DMMP相对不可渗透的主干域的阻塞更少。最初存在于干燥的Naflon中的较小区域的一小部分甚至在高水平的DMMP下仍保留,这表明所有Nafion均无法进行向较大区域的形态转变。 [参考:14]

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