Department of Chemistry, University of Calabria, 87036-Arcavacata di Rende, Cosenza, Italy.
J Phys Chem B. 2009 Oct 22;113(42):13935-41. doi: 10.1021/jp904691g.
The dynamical characteristics and the thermal analysis of water absorbed in filler-free Nafion and in silica or zirconia phosphate Nafion composites, between 20 and -50 degrees C, were investigated by NMR and DSC techniques. Self-diffusion coefficients and longitudinal NMR relaxation times (T(1)) put in evidence a fraction of water freezing at subzero temperatures. The complementary water fraction remains in the liquid state at least down to -50 degrees C. The freezing point (T(f)) depends on the initial water uptake of the electrolyte membrane and, for similar uptake values, water mobility is favorite in composites systems respect to the filler-free Nafion. By DSC thermograms the hydration water molecules number per sulfonic group in the filler-free Nafion was estimated, obtaining 8 molecules/SO(3)(-) group. In the Nafion/Zr(HPO(4))(2) composite, instead, the number of hydration water is about 20 molecules/ionic group, because of the acid nature of the zirconia particles. Below T(f), the presence of this nonfreezable water fraction allows proton transport, and therefore ensures ionic conductivity also at subzero temperatures.
在 20 到-50°C 的温度范围内,我们通过 NMR 和 DSC 技术研究了无填料 Nafion 以及二氧化硅或磷酸锆 Nafion 复合材料中吸收水的动力学特性和热分析。自扩散系数和纵向 NMR 弛豫时间(T(1))表明,一部分水在低温下冻结。在至少-50°C 的温度下,补充的水部分仍保持液态。冰点(T(f))取决于电解质膜的初始水摄取量,对于类似的摄取值,复合材料系统中的水迁移率比无填料 Nafion 更有利。通过 DSC 热谱图,可以估计无填料 Nafion 中每个磺酸基团的水化水分子数,得到 8 个水分子/SO(3)(-)基团。而在 Nafion/Zr(HPO(4))(2)复合材料中,由于氧化锆颗粒的酸性,每个离子基团的水化水分子数约为 20 个。在 T(f)以下,这种不可冻结水部分的存在允许质子传输,从而确保在低温下也具有离子导电性。