Epitaxial Growth of Complex Metal Oxides: Woodhead Publishing Series in Electronic and Optical Materials
Editat de Gertjan Koster, Mark Huijben, Guus Rijndersen Limba Engleză Hardback – 14 mai 2015
Part One reviews the key techniques involved in the epitaxial growth of complex metal oxides, including growth studies using reflection high-energy electron diffraction, pulsed laser deposition, hybrid molecular beam epitaxy, sputtering processes and chemical solution deposition techniques for the growth of oxide thin films. Part Two goes on to explore the effects of strain and stoichiometry on crystal structure and related properties, in thin film oxides. Finally, the book concludes by discussing selected examples of important applications of complex metal oxide thin films in Part Three.
- Provides valuable information on the improvements in epitaxial growth processes that have resulted in higher quality films of complex metal oxides and further advances in applications for electronic and optical purposes
- Examines the techniques used in epitaxial thin film growth
- Describes the epitaxial growth and functional properties of complex metal oxides and explores the effects of strain and defects
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Paperback (1) | 1416.95 lei 5-7 săpt. | |
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Hardback (1) | 1276.81 lei 5-7 săpt. | |
ELSEVIER SCIENCE – 14 mai 2015 | 1276.81 lei 5-7 săpt. |
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Specificații
ISBN-13: 9781782422457
ISBN-10: 1782422455
Pagini: 504
Dimensiuni: 152 x 229 x 61 mm
Greutate: 0.84 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Electronic and Optical Materials
ISBN-10: 1782422455
Pagini: 504
Dimensiuni: 152 x 229 x 61 mm
Greutate: 0.84 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Electronic and Optical Materials
Cuprins
Part 1 Epitaxial growth techniques
Molecular beam epitaxy for the growth of complex oxide materials
Physical vapour deposition for the growth of complex oxide materials
Chemical vapour deposition for the growth of complex oxide materials
Pulsed laser deposition for the growth of complex metal oxides
Sputtering of complex metal oxides
Synthesis and surface engineering of complex metal oxides by atomic layer deposition
Hybrid molecular beam epitaxy for the growth of complex metal oxide materials
High pressure synthesis of transition metal oxides
Part 2 Epitaxial growth and functional properties of complex metal oxides
Epitaxial growth of ferroelectrics and multiferroics
Growth study of epitaxial oxide thin films using Reflection high-energy electron diffraction (RHEED);
Epitaxial growth of piezoelectrics
Epitaxial growth of superconducting oxides
Epitaxial growth of magnetic oxide thin films
Strain engineering during epitaxial growth of complex metal oxides
Defects, impurities and transport phenomenon in complex oxide crystals
In situ x-ray scattering of epitaxial oxide thin films
Scanning probe microscopy (SPM) of epitaxial oxide thin films
Part 3 Applications of complex metal oxides
Optoelectronics: an application of complex metal oxides
Spintronics: an application of complex metal oxides
Thermoelectric complex metal oxides
Solid oxide fuel cells based complex metal oxides
Applications of complex metal oxides in catalysis
PiezoMEMS based on complex metal oxides
Molecular beam epitaxy for the growth of complex oxide materials
Physical vapour deposition for the growth of complex oxide materials
Chemical vapour deposition for the growth of complex oxide materials
Pulsed laser deposition for the growth of complex metal oxides
Sputtering of complex metal oxides
Synthesis and surface engineering of complex metal oxides by atomic layer deposition
Hybrid molecular beam epitaxy for the growth of complex metal oxide materials
High pressure synthesis of transition metal oxides
Part 2 Epitaxial growth and functional properties of complex metal oxides
Epitaxial growth of ferroelectrics and multiferroics
Growth study of epitaxial oxide thin films using Reflection high-energy electron diffraction (RHEED);
Epitaxial growth of piezoelectrics
Epitaxial growth of superconducting oxides
Epitaxial growth of magnetic oxide thin films
Strain engineering during epitaxial growth of complex metal oxides
Defects, impurities and transport phenomenon in complex oxide crystals
In situ x-ray scattering of epitaxial oxide thin films
Scanning probe microscopy (SPM) of epitaxial oxide thin films
Part 3 Applications of complex metal oxides
Optoelectronics: an application of complex metal oxides
Spintronics: an application of complex metal oxides
Thermoelectric complex metal oxides
Solid oxide fuel cells based complex metal oxides
Applications of complex metal oxides in catalysis
PiezoMEMS based on complex metal oxides