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Proton dynamics in phosphotungstic acid impregnated mesoporous silica proton exchange membrane materials

机译:磷钨酸浸渍中孔二氧化硅质子交换膜材料中的质子动力学

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摘要

Phosphotungstic acid is an excellent proton conductor that can be incorporated into porous supports, and nanocomposite proton exchange membrane materials made from mesoporous silica impregnated with phosphotungstic acid have been suggested for use in fuels cells operating > 100 °C. In this work quasielastic neutron scattering was used to study proton self-diffusion in mesoporous disordered and P6mm symmetry silica impregnated with two concentrations of phosphotungstic acid. Overall, the silica structure had a significantly greater effect on proton conduction and diffusion than phosphotungstic acid concentration, with higher proton conduction occurring for the P6mm symmetry silica samples. Quasielastic neutron scattering revealed two populations of protons diffusing through each sample, and that proton conduction is limited by the slower of these populations, which diffuse via a jump-diffusion mechanism. Whilst the fundamental jump-diffusion mechanism by which these slower protons moved was found to be similar for both silica supports and phosphotungstic acid concentrations, the faster diffusion occurring in P6mm structured silica arises from a lower residence time of protons moving between sites in the jump-diffusion model, suggesting a lower energy barrier.
机译:磷钨酸是一种极好的质子导体,可以掺入多孔载体中,由含磷钨酸的中孔二氧化硅制成的纳米复合质子交换膜材料已被建议用于运行温度超过100°C的燃料电池中。在这项工作中,准弹性中子散射被用来研究质子在具有两种浓度的磷钨酸浸渍的无孔和P6mm对称二氧化硅中的自扩散。总体而言,二氧化硅结构对质子传导和扩散的影响比磷钨酸浓度大得多,对于P6mm对称二氧化硅样品,质子传导更高。准弹性中子散射揭示了两个质子在每个样本中扩散,并且质子传导受到这些团中较慢的限制,后者通过跳跃扩散机制扩散。虽然发现这些较慢质子移动的基本跳跃扩散机制对于二氧化硅载体和磷钨酸浓度都是相似的,但P6mm结构二氧化硅中发生的较快扩散是由于质子在跳跃位置之间移动的时间较短而引起的。扩散模型,表明较低的能垒。

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