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首页> 外文期刊>Science and technology of advanced materials >Mechanochemically synthesized CsH2PO4–H3PW12O40 composites as proton-conducting electrolytes for fuel cell systems in a dry atmosphere
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Mechanochemically synthesized CsH2PO4–H3PW12O40 composites as proton-conducting electrolytes for fuel cell systems in a dry atmosphere

机译:机械化学合成的CsH2PO4–H3PW12O40复合材料,作为在干燥气氛中用于燃料电池系统的质子传导电解质

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Cesium dihydrogen phosphate ( CsH2PO4 , CDP) and dodecaphosphotungstic acid ( H3PW12O40 nH2O , WPA nH2O ) were mechanochemically milled to synthesize CDP–WPA composites. The ionic conductivities of these composites were measured by an ac impedance method under anhydrous conditions. Despite the synthesis temperatures being much lower than the dehydration and phase-transition temperatures of CDP under anhydrous conditions, the ionic conductivities of the studied composites increased significantly. The highest ionic conductivity of 6.58×10?4?Scm?1 was achieved for the 95CDP 5WPA composite electrolyte at 170?°C under anhydrous conditions. The ionic conduction was probably induced in the percolated interfacial phase between CDP and WPA. The phenomenon of high ionic conduction differs for the CDP–WPA composite and pure CDP or pure WPA under anhydrous conditions. The newly developed hydrogen interaction between CDP and WPA supports anhydrous proton conduction in the composites.
机译:磷酸二氢铯(CsH 2 PO 4 ,CDP)和十二磷钨酸(H 3 PW 12 O 40 nH 2 O,WPA nH 2 O)以合成CDP-WPA复合材料。这些复合物的离子电导率是在无水条件下通过交流阻抗法测量的。尽管在无水条件下合成温度远低于CDP的脱水和相变温度,但所研究复合材料的离子电导率却显着提高。 95CDP 5WPA复合电解质在170°C无水条件下的最高离子电导率为6.58×10 ?4 ?Scm ?1 。在CDP和WPA之间的渗透界面相中可能诱导了离子传导。在无水条件下,CDP-WPA复合材料和纯CDP或纯WPA的高离子传导现象不同。 CDP和WPA之间新开发的氢相互作用支持复合材料中的无水质子传导。

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