소장자료
| LDR | 04282cam a2200000 a | ||
| 001 | 0100494351▲ | ||
| 003 | OCoLC▲ | ||
| 005 | 20201215172753▲ | ||
| 007 | cr ▲ | ||
| 008 | 170612s2017 ne o 000 0 eng d▲ | ||
| 020 | ▼a9780081017524 (ePub ebook)▲ | ||
| 020 | ▼a0081017529 (ePub ebook)▲ | ||
| 020 | ▼z9780128111666▼q(pbk.)▲ | ||
| 035 | ▼a(OCoLC)1004569154▼z(OCoLC)1003512956▲ | ||
| 040 | ▼aNLE▼beng▼epn▼cNLE▼dUIU▼dOPELS▼dOCLCF▼dYDX▼dMERER▼dOCLCQ▼dUPM▼dEBLCP▼dOCLCQ▼dD6H▼dU3W▼dOCLCQ▼dWYU▼dOTZ▼d221016▲ | ||
| 082 | 0 | 4 | ▼a530.4275▼223▲ |
| 245 | 0 | 0 | ▼aMetal oxide-based thin film structures▼h[electronic resource] :▼bformation, characterization and application of interface-based phenomena /▼cedited by Nini Pryds, Vincenzo Esposito.▲ |
| 260 | ▼aAmsterdam :▼bElsevier,▼c2017.▲ | ||
| 300 | ▼a1 online resource.▲ | ||
| 490 | 0 | ▼aMetal oxides series▲ | |
| 500 | ▼aSection A Interface formation: Theoretical aspect in epitaxial growth mechanisms, structural features and defects formation 1. Epitaxy of 5d transition metal oxide thin films and heterostructures 2. Oxide superlattices by PLD: A practical guide 3. Oxide molecular beam epitaxy of complex oxide heterointerfaces 4. Electrochemical ionic interfaces Section B Experimental: Structural and compositional characterization techniques of metal oxides interfaces 5. In situ stress measurements of metal oxide thin films 6. Plume characterization in pulsed laser deposition of metal oxide thin films 7. Photoemission of buried metal oxide interfaces 8. Functional material properties of oxide thin films probed by atomic force microscopy on the nanoscale 9. Controlled atmosphere high-temperature scanning probe microscopy (CAHT-SPM) 10. Scanning SQUID measurements of oxide interfaces Section C Modeling and properties at the metal oxide interfaces 11. First-principle study of metal oxide thin films: Electronic and magnetic properties of confined d electrons 12. Computational study of energy materials 13. High-mobility two-dimensional electron gases at complex oxide interfaces 14. Strain and interfaces for metal oxide-based memristive devices Section D Applications of metal oxide interfaces 15. Metal oxide thin film-based low-temperature-operating solid oxide fuel cell by interface structure control 16. Ionic conductivity of metal oxides: An essential property for all-solid-state lithium-ion batteries 17. Nanoionics and interfaces for energy and information technologies 18. Future emerging technologies based on metal oxide interfaces 19. Ferroelectric and piezoelectric oxide nanostructured films for energy harvesting applications 20. Redox-based memristive metal-oxide devices.▲ | ||
| 650 | 0 | ▼aThin films.▲ | |
| 650 | 0 | ▼aMetallic oxides.▲ | |
| 650 | 0 | ▼aInterfaces (Physical sciences)▲ | |
| 700 | 1 | ▼aPryds, Nini.▲ | |
| 700 | 1 | ▼aEsposito, Vincenzo.▲ | |
| 776 | 0 | 8 | ▼iPrint version :▼z9780128111666▲ |
| 856 | 4 | 0 | ▼3ScienceDirect▼uhttp://www.sciencedirect.com/science/book/9780128111666▲ |
Metal oxide-based thin film structures :formation, characterization and application of interface-based phenomena
자료유형
국외eBook
서명/책임사항
Metal oxide-based thin film structures [electronic resource] : formation, characterization and application of interface-based phenomena / edited by Nini Pryds, Vincenzo Esposito.
발행사항
Amsterdam : Elsevier , 2017.
형태사항
1 online resource.
일반주기
Section A Interface formation: Theoretical aspect in epitaxial growth mechanisms, structural features and defects formation 1. Epitaxy of 5d transition metal oxide thin films and heterostructures 2. Oxide superlattices by PLD: A practical guide 3. Oxide molecular beam epitaxy of complex oxide heterointerfaces 4. Electrochemical ionic interfaces Section B Experimental: Structural and compositional characterization techniques of metal oxides interfaces 5. In situ stress measurements of metal oxide thin films 6. Plume characterization in pulsed laser deposition of metal oxide thin films 7. Photoemission of buried metal oxide interfaces 8. Functional material properties of oxide thin films probed by atomic force microscopy on the nanoscale 9. Controlled atmosphere high-temperature scanning probe microscopy (CAHT-SPM) 10. Scanning SQUID measurements of oxide interfaces Section C Modeling and properties at the metal oxide interfaces 11. First-principle study of metal oxide thin films: Electronic and magnetic properties of confined d electrons 12. Computational study of energy materials 13. High-mobility two-dimensional electron gases at complex oxide interfaces 14. Strain and interfaces for metal oxide-based memristive devices Section D Applications of metal oxide interfaces 15. Metal oxide thin film-based low-temperature-operating solid oxide fuel cell by interface structure control 16. Ionic conductivity of metal oxides: An essential property for all-solid-state lithium-ion batteries 17. Nanoionics and interfaces for energy and information technologies 18. Future emerging technologies based on metal oxide interfaces 19. Ferroelectric and piezoelectric oxide nanostructured films for energy harvesting applications 20. Redox-based memristive metal-oxide devices.
기타형태저록
ISBN
9780081017524 (ePub ebook) 0081017529 (ePub ebook)
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