Issue 30, 2007

New, high temperature superacid zirconia-doped Nafion composite membranes

Abstract

This study reports the synthesis and the characterization of composite, proton-conducting membranes prepared by dispersing in a Nafion matrix a highly functionalized inorganic filler, i.e. superacid zirconia. The results demonstrate that the surface properties of this unique ceramic filler play a key role in promoting high hydration level and enhanced acidity, which in turn reflect in improved thermal and transport properties of the composite membranes. We show that these membranes, with an optimum of 5% of superacid zirconia content, have a high conductivity which remains stable at temperature levels where the ionic transport of plain Nafion, as well as of conventional Nafion-based composite membranes, usually decays. These results suggest that this new type of Nafion composite membrane may be successfully used as an improved separator in polymer-electrolyte membrane fuel cells.

Graphical abstract: New, high temperature superacid zirconia-doped Nafion™ composite membranes

Article information

Article type
Paper
Submitted
13 Feb 2007
Accepted
16 Mar 2007
First published
13 Apr 2007

J. Mater. Chem., 2007,17, 3210-3215

New, high temperature superacid zirconia-doped Nafion composite membranes

M. A. Navarra, F. Croce and B. Scrosati, J. Mater. Chem., 2007, 17, 3210 DOI: 10.1039/B702322G

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