The effects of lattice strain, dislocations, and microstructure on the transport properties of YSZ films
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Supporting information
Accepted version
Author(s)
Skinner, SJ
McComb, DW
Harrington, GF
Cavallaro, A
Kilner, JA
Type
Journal Article
Abstract
Enhanced conductivity in YSZ films has been of substantial interest over the last decade. In this paper we examine the effects of substrate lattice mismatch and film thickness on the strain in YSZ films and the resultant effect on the conductivity. 8 mol% YSZ films have been grown on MgO, Al2O3, LAO and NGO substrates, thereby controlling the lattice mismatch at the film/substrate interface. The thickness of the films was varied to probe the interfacial contribution to the transport properties, as measured by impedance spectroscopy and tracer diffusion. No enhancement in the transport properties of any of the films was found over single crystal values, and instead the effects of lattice strain were found to be minimal. The interfaces of all films were more resistive due to a heterogeneous distribution of grain boundaries, and no evidence for enhanced transport down dislocations was found.
Date Issued
2017-05-19
Date Acceptance
2017-05-19
Citation
Physical Chemistry Chemical Physics, 2017, 19, pp.14319-14336
ISSN
1463-9084
Publisher
Royal Society of Chemistry
Start Page
14319
End Page
14336
Journal / Book Title
Physical Chemistry Chemical Physics
Volume
19
Copyright Statement
© the Owner Societies 2017
Sponsor
Engineering & Physical Science Research Council (EPSRC)
Commission of the European Communities
Grant Number
EP/H006060/1
PIEF-GA-2010-274730
Subjects
Science & Technology
Physical Sciences
Chemistry, Physical
Physics, Atomic, Molecular & Chemical
Chemistry
Physics
YTTRIA-STABILIZED ZIRCONIA
COLOSSAL IONIC-CONDUCTIVITY
THIN-FILMS
DIELECTRIC-PROPERTIES
THERMAL-EXPANSION
OXYGEN-TRANSPORT
X-RAY
INTERFACES
OXIDE
DIFFUSION
Chemical Physics
02 Physical Sciences
03 Chemical Sciences
Publication Status
Published