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Anisotropic Diffusion and Morphology in Perfluorosulfonate Ionomers Investigated by NMR

机译:NMR研究全氟磺酸盐离聚物的各向异性扩散和形貌

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Anisotropy in ionomer membranes represents a powerful interaction for modulating properties such as mechanical moduli, thermal expansions, and small molecule transport, all tunable via controlled processing. We observe uniform hydrophilic channel alignment in three perfluorosulfonate ionomer membrane types, quantified by H-2 NMR spectroscopy of absorbed D2O molecules. Our measurements show biaxial or uniaxial in-plane alignment for extruded membranes. but uniaxial through-plane alignment for dispersion-cast membranes, and further demonstrate affine swelling with both water uptake and thermal expansion. In order to con-elate alignment data with a quantity relevant to proton transport, we measure the anisotropy of water self-diffusion using pulsed-field-gradient NMR along different membrane directions. Extruded membranes with stronger alignment exhibit 18% faster in-plane diffusion than through-plane diffusion. while diffusion anisotropy is minimal for weakly aligned membranes. These results should lead to a more quantitative understanding of and control over membrane properties via manipulation of molecular
机译:离聚物膜中的各向异性代表了强大的相互作用,可调节性能,如机械模量,热膨胀和小分子传输,所有这些均可通过受控工艺进行调节。我们在三种全氟磺酸离聚物膜类型中观察到均匀的亲水通道排列,通过吸收的D2O分子的H-2 NMR光谱定量。我们的测量结果显示了挤出膜的双轴或单轴平面对齐。但是对于分散流延膜来说是单轴贯穿平面对准,并且进一步证明了仿射膨胀以及吸水率和热膨胀率。为了将对准数据与质子传输相关,我们使用脉冲场梯度NMR沿着不同的膜方向测量水的自扩散各向异性。具有更强配向性的挤出膜的面内扩散速度比穿透面扩散快18%。而对于薄弱排列的膜,扩散各向异性最小。这些结果应通过对分子的操纵,可以更定量地了解和控制膜的性能。

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