Anomalous Oxidation States in Multilayers for Fuel Cell Applications
β Scribed by James M. Perkins; Sarah Fearn; Stuart N. Cook; Rajagopalan Srinivasan; Chris M. Rouleau; Hans M. Christen; Geoff D. West; Richard J. H. Morris; Hamish L. Fraser; Stephen J. Skinner; John A. Kilner; David W. McComb
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 1007 KB
- Volume
- 20
- Category
- Article
- ISSN
- 1616-301X
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β¦ Synopsis
Abstract
Significant recent interest has been directed towards the relationship between interfaces and reports of enhanced ionic conductivity. To gain a greater understanding of the effects of heteroβinterfaces on ionic conductivity, advanced analytical techniques including electron microscopy (TEM/STEM), electron energy loss spectroscopy (EELS), and secondary ion mass spectrometry (SIMS) are used to characterize CeO~2~/Ce~0.85~Sm~0.15~O~2~ multilayer thin films grown by pulsed laser deposition. High quality growth is observed, but ionic conductivity measured by impedance spectroscopy and ^18^O tracer experiments is consistent with bulk materials. EELS analysis reveals the unusual situation of layers containing only Ce(IV) adjacent to layers containing both Ce(III) and Ce(IV). Post oxygen annealing induced oxygen diffusion and mixed oxidation states in both layers, but only in the vicinity of low angle grain boundaries perpendicular to the layers. The implications of the anomalous behavior of the Ce oxidation states on the design of novel electrolytes for solid oxide fuel cells is discussed.
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## Abstract Poly(phenylene oxide)s were synthesized by the oxidative polymerization of 2βphenyl phenol (PP) and 2βallyl phenol (AP). The copolymers were also synthesized with 80 mol % PP and 20 mol % AP and with equimolar monomers. The polymers were characterized. Blends of these polymers with poly