Epitaxial Thin Films of Lanthanum Nickel Oxides - Deposition by PI-MOCVD, Structural Characterization and High Temperature Transport Properties

by Burriel López, Mónica
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Burriel López, Mónica Epitaxial Thin Films of Lanthanum Nickel Oxides - Deposition by PI-MOCVD, Structural Characterization and High Temperature Transport Properties
Burriel López, Mónica - Epitaxial Thin Films of Lanthanum Nickel Oxides - Deposition by PI-MOCVD, Structural Characterization and High Temperature Transport Properties

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Description

Recently there has been a great interest in the study of La2NiO4 due to its MIEC properties, which make it suitable in electrochemical devices, such as cathode in ITSOFCs, permeation membranes or gas sensors. This work is focused on the study, from a fundamental point of view, of epitaxial c-axis oriented La2NiO4 thin films deposited by PI-MOCVD on different substrates, to achieve a better comprehension of the microstructural characteristics, their variation with strain and their influence in the high temperature transport properties. Moreover, the epitaxiality permits the measurement of the films'' properties in two perpendicular directions, a direct inset of the anisotropy. La2NiO4 is the n=1 member of the Lan+1NinO3n+1 Ruddlesden-Popper family. We have also attempted to deposit c-axis oriented films of the n=2, 3 and ? members and studied the variation of their transport properties with n. The techniques and results presented in this book will result very useful to a wide range of researchers working in the fields of oxide thin films, K2NiF4-type compounds, fundamental study of transport properties in oxides and solids in general and in the possible applications of the material.

Contributors

Author:
Burriel López, Mónica

Further information

Biography Artist:
Mónica Burriel: Chemical Engineer, University of Zaragoza. PhD in Materials Science, Materials Science Institute of Barcelona, Autonomous University of Barcelona. Research Assistant, Nanoscience and Nanotechnology Research Center, Barcelona. Currently Postdoc, Institute of Materials for Electrical Engineering, University of Karlsruhe, Germany
Language:
Englisch
Number of Pages:
228
Media Type:
Taschenbuch
Publisher:
VDM Verlag Dr. Müller

Master Data

Product Type:
Paperback book
Release date:
April 8, 2008
Package Dimensions:
0.22 x 0.15 x 0.013 m; 0.386 kg
GTIN:
09783836474979
DUIN:
70BQN0FLO79
$85.71
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