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Mechanochemically synthesized cesium-ion-substituted phosphotungstic acid using several types of cesium-containing salts

机译:使用几种含铯盐的机械化学合成铯离子取代的磷钨酸

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Cesium salts of Cs2SO4, Cs2CO3 and CsHSO4, and phosphotungstic acid (H3PW12O40·6H2O:WPA-6H2O) were mechanically milled to synthesize chemically durable WPA composites. The X-ray diffraction patterns of composites suggested the formation of partially substituted CsxH3-xPW12O40 composites after milling at 720 rpm for 10 min. Proton conductivities under both humidified and dry conditions of the resultant composites markedly improved. The proton conductivities strongly depended on the type of cesium salt. The hydrogen bonding distance L in the frame structures of the composites was estimated from the 1H-isotropic chemical shift. The proton conductivities in dry conditions of WPA·6H2O and the composites were strongly represented to L.
机译:机械研磨CS2SO4,CS2CO3和CSHSO4,CS2CO3和CSHSO4和磷钨酸(H3PW12O40·6H2O:WPA-6H2O)的铯盐以合成化学耐用的WPA复合材料。复合材料的X射线衍射图案表明在720rpm铣削10分钟后在研磨后形成部​​分取代的CSXH3-XPW12O40复合材料。在所得复合材料的加湿和干燥条件下的质子电导率明显改善。质子电导率强烈依赖于铯盐的类型。复合材料框架结构中的氢键距离L从1H-各向同性化学换档估算。 WPA·6H2O和复合材料的干燥条件下的质子电导率强烈地表示为L.

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