Mechanochemically synthesized CsH2PO4-H 3PW12O40 composites as proton-conducting electrolytes for fuel cell systems in a dry atmosphere

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Abstract

Cesium dihydrogen phosphate (CsH2PO4, CDP) and dodecaphosphotungstic acid (H3PW12O40nH 2O, WPAnH2O) 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 95CDP5WPA 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. © 2011 National Institute for Materials Science.

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Oh, S. Y., Insani, E. K., Nguyen, V. H., Kawamura, G., Muto, H., Sakai, M., & Matsuda, A. (2011). Mechanochemically synthesized CsH2PO4-H 3PW12O40 composites as proton-conducting electrolytes for fuel cell systems in a dry atmosphere. Science and Technology of Advanced Materials, 12(3). https://doi.org/10.1088/1468-6996/12/3/034402

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