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Metal Oxide-Based Thin Film Structures

Formation, Characterization and Application of Interface-Based Phenomena

Paperback Engels 2017 9780128111666
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Metal Oxide-Based Thin Film Structures: Formation, Characterization and Application of Interface-Based Phenomena bridges the gap between thin film deposition and device development by exploring the synthesis, properties and applications of thin film interfaces.

Part I deals with theoretical and experimental aspects of epitaxial growth, the structure and morphology of oxide-metal interfaces deposited with different deposition techniques and new developments in growth methods. Part II concerns analysis techniques for the electrical, optical, magnetic and structural properties of thin film interfaces. In Part III, the emphasis is on ionic and electronic transport at the interfaces of Metal-oxide thin films.

Part IV discusses methods for tailoring metal oxide thin film interfaces for specific applications, including microelectronics, communication, optical electronics, catalysis, and energy generation and conservation.

This book is an essential resource for anyone seeking to further their knowledge of metal oxide thin films and interfaces, including scientists and engineers working on electronic devices and energy systems and those engaged in research into electronic materials.

Specificaties

ISBN13:9780128111666
Taal:Engels
Bindwijze:Paperback

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Inhoudsopgave

<p>Section A Interface formation: Theoretical aspect in epitaxial growth mechanisms, structural features and defects formation<br>1. Epitaxy of 5d transition metal oxide thin films and heterostructures<br>2. Oxide superlattices by PLD: A practical guide<br>3. Oxide molecular beam epitaxy of complex oxide heterointerfaces<br>4. Electrochemical ionic interfaces</p> <p>Section B Experimental: Structural and compositional characterization techniques of metal oxides interfaces<br>5. In situ stress measurements of metal oxide thin films<br>6. Plume characterization in pulsed laser deposition of metal oxide thin films<br>7. Photoemission of buried metal oxide interfaces<br>8. Functional material properties of oxide thin films probed by atomic force microscopy on the nanoscale<br>9. Controlled atmosphere high-temperature scanning probe microscopy (CAHT-SPM)<br>10. Scanning SQUID measurements of oxide interfaces</p> <p>Section C Modeling and properties at the metal oxide interfaces<br>11. First-principle study of metal oxide thin films: Electronic and magnetic properties of confined d electrons<br>12. Computational study of energy materials<br>13. High-mobility two-dimensional electron gases at complex oxide interfaces<br>14. Strain and interfaces for metal oxide-based memristive devices</p> <p>Section D Applications of metal oxide interfaces<br>15. Metal oxide thin film-based low-temperature-operating solid oxide fuel cell by interface structure control<br>16. Ionic conductivity of metal oxides: An essential property for all-solid-state lithium-ion batteries<br>17. Nanoionics and interfaces for energy and information technologies<br>18. Future emerging technologies based on metal oxide interfaces<br>19. Ferroelectric and piezoelectric oxide nanostructured films for energy harvesting applications<br>20. Redox-based memristive metal-oxide devices</p>

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