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Ionic Transport Properties of P2O5-SiO2 Glassy Protonic Composites Doped with Polymer and Inorganic Titanium-based Fillers

机译:聚合物和无机钛基填料掺杂P2O5-SiO2玻璃质子复合材料的离子传输性能

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摘要

This paper is focused on the determination of the physicochemical properties of a composite inorganic–organic modified membrane. The electrical conductivity of a family of glassy protonic electrolytes defined by the general formula (P O ) (SiO ) , where x/y is 3/7 are studied by Alternating Current electrochemical impedance spectroscopy (AC EIS) method. The reference glass was doped with polymeric additives—poly(ethylene oxide) (PEO) and poly(vinyl alcohol) (PVA), and additionally with a titanium-oxide-based filler. Special attention was paid to determination of the transport properties of the materials thus modified in relation to the charge transfer phenomena occurring within them. The electrical conductivities of the ‘dry’ material ranged from 10 to 10 S/cm, whereas for ‘wet’ samples the values were ~10 S/cm. The additives also modified the pore space of the samples. The pore distribution and specific surface of the modified glassy systems exhibited variation with changes in electrolyte chemical composition. The mechanical properties of the samples were also examined. The Young’s modulus and Poisson’s ratio were determined by the continuous wave technique (CWT). Based on analysis of the dispersion of the dielectric losses, it was found that the composite samples exhibit mixed-type proton mobility with contributions related to both the bulk of the material and the surface of the pore space.
机译:本文的重点是测定复合无机 - 有机改性膜的物理化学性质。通过交流电化学阻抗光谱(AC EIS)方法研究了由通式(P O)(P O)(SiO)定义的玻璃质子电解质系列的电导率,其中X / Y是3/7。参考玻璃掺杂配聚合物添加剂 - 聚(环氧乙烷)(PEO)和聚(乙烯醇)(PVA),并另外用氧化钛基填料。特别注意,对如此修饰的材料的运输性质的测定得到了特殊的关注,这些材料有关在它们内部发生的电荷转移现象的变化。 “干”材料的电导率范围为10至10 s / cm,而“湿润”样品的值为约10 s / cm。添加剂还修饰了样品的孔隙空间。改性玻璃系统的孔分布和比表面表现出电解质化学组合物的变化变化。还检查了样品的机械性能。杨氏模量和泊松的比率由连续波技术(CWT)确定。基于介电损耗的分散的分析,发现复合样品表现出与孔隙大部分材料和孔隙表面相关的贡献的混合型质子迁移率。

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