Zinc Oxide : A Material for Micro- And Optoelectronic Applications. Questo articolo non è disponibile.
Lingua: inglese
Editore: Springer, 2005
Serie: Libro 119 di 241 - NATO Science Series II: Mathematics, Physics and Chemistry
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Codice articolo 3496699
- Titolo
- Zinc Oxide : A Material for Micro- And Optoelectronic Applications
- Autore
- Nickel, Norbert H. (EDT); Terukov, Evgenii (EDT)
- Editore
- Springer
- Anno di pubblicazione
- 2005
- Condizione
- As New
- Rilegatura
- Brossura
- Lingua
- inglese
- ISBN 10
- 1402034741
- ISBN 13
- 9781402034749
- Serie
- Libro 119 di 241: NATO Science Series II: Mathematics, Physics and Chemistry
This volume reviews the latest experimental and theoretical studies in the field of ZnO. The chapters reflect the topics that were discussed during the NATO Advanced Research Workshop, which brought together researchers from Nato countries, Russia, Ukraine, and Kazakhstan to encourage cross fertilization and wider dissemination of the advances in this important research field. Fundamental issues such as growth of ZnO, structural, optical and electric properties, the role of the hydrogen and more were discussed.
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Contenuti
Contributing Authors. Preface. Part I: ZnO bulk and layer growth: The Scope of Zinc Oxide Bulk Growth; R. Triboulet et al. Growth Mechanism of ZnO Layers; A.Kh. Abduev et al. Kinetics of High-Temperature Defect Formation in ZnO in the Stream of Oxygen Radicals; M.B. Kotlyarevsky et al. Part II: Electrical, Optical, and Structural Properties: Electrical Properties of ZnO; David C. Look et al. Electrical Properties of ZnO Thin Films and Single Crystals; M. Grundmann et al. Structure, Morphology, and Photoluminescence of ZnO Films; V.A. Karpina. Optics and Spectroscopy of Point Defects in ZnO; Vladimir Nikitenko. Whispering Gallery Modes in Hexagonal Zinc Oxide Micro- and Nanocrystals; T. Nobis et al. Properties of Dislocations in Epitaxial ZnO Layers Analyzed by Transmission Electron Microscopy; E. Muller et al. Part III: Role of Hydrogen: Muon Spin Rotation Measurements on Zinc Oxide; E.A. Davis. Hydrogen Donors in Zinc Oxide; M.D. McCluskey and S.J. Jokela. Hydrogen-Related Defects in Zno Studied by JR Absorption Spectroscopy; E.V. Lavrov et al. Influence of the Hydrogen Concentration on H Bonding in Zinc Oxide; N.H. Nickel. Part IV: Fundamental properties: Valence Band Ordering and Magneto-Optical Properties of Free and Bound Excitons in ZnO; A.V. Rodina et al. Fundamental Optical Spectra and Electronic Structure of Zno Crystals; V. Val et al. Photo-Induced Localized Lattice Vibrations in ZnO Doped with 3d Transition Metal Impurities; Alexey Kislov. Part V: Device applications: ZnO Window Layers for Solar Cells; W. Fuhs. ZnO/AlGaN Ultraviolet Light Emitting Diodes; E.V. Kaunina et al. ZnO Transparent Thin-Film Transistor Device Physics; J.F. Wager. Zinc Oxide Thin Film Transistors; E. Fortunato et al. Index
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