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Nuclear Magnetic Resonance Study of Water-Polymer Interactions and Self-Diffusion of Water in Polymer Films

机译:水 - 聚合物相互作用的核磁共振研究及聚合物薄膜水的自扩散

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The diffusivity and distribution of water in the butyl methacrylate and methacrylic acid copolymer films swollen in water have been investigated using the NMR relaxation and pulse field gradient (PFG) NMR techniques. The contributions of polymer matrix protons, surface water and bound water have been determined from 1H NMR spectra and relaxation functions. PFG NMR experiments showed that the echo? ?attenuation function depends on the diffusion time indicating that water inside the swollen film is trapped in restricted confinement. The data obtained have been discussed using published physical models for diffusion of water in polymeric materials. The sizes of pores inside the film were estimated using the published model approaches giving the range of 0.8-1.0 μm. Magnetization decays as well as the spin-spin relaxation times of water saturated polymer films were also determined in this study. NMR relaxation provided additional information on the water distribution in the porous microstructure. The volume-averaged water mobility decreased with increasing hydrophobic content of the polymers.
机译:使用NMR弛豫和脉冲场梯度(PFG)NMR技术研究了甲基丙烯酸丁酯和甲基丙烯酸共聚物薄膜中水中水的散射和分布。已经从1H NMR光谱和松弛功能确定了聚合物基质质子,表面水和结合水的贡献。 PFG NMR实验表明回声? ?衰减功能取决于扩散时间,表明肿胀薄膜内的水被捕获在限制限制。已经使用公开的物理模型讨论了所获得的数据,用于在聚合物材料中的水扩散。使用发布的模型方法估计薄膜内的孔的尺寸,其含量为0.8-1.0μm。在本研究中也确定了磁化衰减以及水饱和聚合物膜的旋转旋转弛豫时间。 NMR弛豫提供了有关多孔微观结构的水分布的额外信息。随着聚合物的疏水含量增加,体积平均水迁移率降低。

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