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Electroluminescence

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Cover of 'Electroluminescence'

Table of Contents

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    Book Overview
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    Chapter 1 Retrospect and Prospect on Research and Development of Electroluminescent Panels
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    Chapter 2 Developments in the Theory of Electroluminescence Mechanisms
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    Chapter 3 Auger Effect in Semiconductors: Why Does It Matter for Electroluminescence?
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    Chapter 4 The Impact Cross Section of Electroluminescence Centers
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    Chapter 5 Impact Excitation Cross Section in Electroluminescence
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    Chapter 6 Electroluminescent Mechanisms of Rare-Earth-Doped ZnS Thin Films
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    Chapter 7 Time Resolved Emission Spectra in ZnS Thin Film Electroluminescent Devices
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    Chapter 8 Excitation Mechanism Based on Field-Induced Delocalization of Luminescent Centers in CaS:Eu 2+ and SrS:Ce 3+ Thin-Film Electroluminescent Devices
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    Chapter 9 Excitation Mechanism in White-Light Emitting SrS:Pr, K and SrS:Ce, K, Eu Thin-Film Electroluminescent Devices
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    Chapter 10 Novel Step Impact Electroluminescent Devices
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    Chapter 11 Preparation of a Low Voltage ZnS Thin Film Electroluminescent Device Using Injection of Hot Electrons into the Emitting Layer
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    Chapter 12 Secondary Light Output from ZnS:Mn Thin Film Electroluminescent Devices
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    Chapter 13 Thermally Stimulated Currents in Thin Film Electroluminescent Devices
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    Chapter 14 Measurement of Trap Levels in Electroluminescent Devices by Photon-Released Residual Charges
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    Chapter 15 Influence of the Mn Concentration and the Level of Excitation on Efficiency of ZnS:Mn Devices
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    Chapter 16 Characterization of Isolated Mn 2+ Ions in ZnS:Mn Thin Film
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    Chapter 17 Bound-Excitonic Emissions in Undoped and Mn-Doped ZnS Single Crystals
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    Chapter 18 About the Microstructure of Luminescent Centers in SiO x and ZnS Films Doped with Tb and Mn Fluorides
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    Chapter 19 On the Stability of Rare Earth Centers in II–VI Compounds
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    Chapter 20 The Relation of Thin Film Electroluminescence and Photoluminescence Excitation Spectra
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    Chapter 21 The Dependence of Near Band Edge Electro- and Photoluminescence on Purity of Starting Materials in ZnSe Crystals
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    Chapter 22 Photoluminescence of Zinc-Sulfo-Selenide Single Crystals Grown by Sublimation Method
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    Chapter 23 CdS-ZnS Superlattice Electroluminescent Device Prepared by Hot Wall Epitaxy
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    Chapter 24 An Electroluminescent Device Using Sintered Manganese-Doped Zinc Sulfide Phosphor Ceramics
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    Chapter 25 Role of Sulfur Vacancies in Luminescence of Pure CaS
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    Chapter 26 Structural Disorders in Gd 2 O 2 S:Tb Phosphors
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    Chapter 27 Thin Film Electroluminescent Phosphors for Patterned Full-Color Displays
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    Chapter 28 The TbOF Complex Center and the Brightness of ZnS Thin-Film Green Electroluminescent Devices
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    Chapter 29 Doping Conditions of Tb, F Luminescent Centers in ZnS: Tb, F Films — Effects of Fabrication Methods on Doping Conditions
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    Chapter 30 Effects of Preparation and Operation Conditions on Electroluminescence Spectra of ZnS:TbF 3 Film Structures
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    Chapter 31 Green AC Electroluminescence in ZnS Thin Films Doped with Tb, Er and Ho Ions and Concentration Quenching Models
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    Chapter 32 Pulse-Excited Characteristics of Electroluminescent Device Based on ZnS:Tb, F Thin Films
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    Chapter 33 AC Electroluminescence of Ho-Implanted ZnS Thin Films
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    Chapter 34 High-Luminance ZnS:Sm, F Thin-Film Electroluminescent Devices Using Ferroelectric PbTiO 3 Thin-Film
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    Chapter 35 Electroluminescent Devices With CaS:Eu 2+ Active Layer Grown by R.F. Reactive Sputtering
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    Chapter 36 Improvement in Electro-Optical Characteristics of CaS:Eu Electroluminescent Devices
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    Chapter 37 ZnS-like Behaviour of Efficient CaS:Eu Electroluminescent Devices
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    Chapter 38 Bright SrS TFEL Devices Prepared by Multi-Source Deposition
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    Chapter 39 Sulphur Defects and Deep Levels in SrS:Ce Thin Films
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    Chapter 40 Sr 1−x Zn x S:Ce, F Phosphor for Thin Film Electroluminescent Devices
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    Chapter 41 SrSe:Ce Thin Film Electroluminescent Device
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    Chapter 42 Electroluminescence of Rare-Earth Activated SrS Thin-Films
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    Chapter 43 Multi-Color Electroluminescent Devices Utilizing SrS:Pr, Ce Phosphor Layers and Color Filters
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    Chapter 44 Electroluminescent Materials Grown by Atomic Layer Epitaxy
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    Chapter 45 The Role of Chemical Vapour Deposition in the Fabrication of High Field Electroluminescent Displays
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    Chapter 46 Multi-Source Deposition Method for ZnS and SrS Thin-Film Electroluminescent Devices
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    Chapter 47 Efficient ZnS:Mn Electroluminescent Films Grown by Metal Organic Chemical Vapor Deposition
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    Chapter 48 Chemical Vapor Deposition of Thin Films for ACEL
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    Chapter 49 AC Thin-Film ZnS:Mn Electroluminescent Device Prepared by Intense Pulsed Ion Beam Evaporation
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    Chapter 50 Review of Flat Panel Displays: Electroluminescent Displays, Liquid Crystal Displays, Plasma Displays, etc.
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    Chapter 51 Design Rules for Thin Film Electroluminescent Display Panels
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    Chapter 52 Power Consumption of Thin-Film Electroluminescent Matrix Display
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    Chapter 53 TFEL Matrix Display Design Rules Based on a 3 Part Electrical Model
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    Chapter 54 Degradation Processes in Thin Film Electroluminescent Devices
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    Chapter 55 ZnS:Mn Electroluminescent Devices with High Performance Using SiO 2 /Ta 2 O 5 /SiO 2 Insulating Layer
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    Chapter 56 Thin Film Photoconductor-Electroluminescent Memory Display Devices
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    Chapter 57 Tunable Color Electroluminescence Display Operated by Pulse Code Modulation
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    Chapter 58 Optical Behaviour of Electroluminescent Devices
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    Chapter 59 Current Filaments in ZnS:Mn DC Thin Film Electroluminescent Devices
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    Chapter 60 Cathode-Zinc Sulphide Barrier Heights and Electron Injection in Direct Current Thin Film Electroluminescent Devices
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    Chapter 61 Low Voltage Driven Electroluminescent Devices with Manganese-Doped Zinc Sulfide Thin Film Emitting Layer Grown on Insulating Ceramics by Metal Organic Chemical Vapor Deposition
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    Chapter 62 Sound Emitting Thin Film Electroluminescent Devices Using Piezoelectric Ceramics as Insulating Layer
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    Chapter 63 Characteristics of ZnO:Al Transparent Conductive Films
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    Chapter 64 Recent Developments and Trends in Thin-Film Electroluminescent Display Drivers
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    Chapter 65 Bidirectional Push-Pull Symmetric Driving Method of Thin Film Electroluminescent Display
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    Chapter 66 Analysis of the Lifetime of Powder Electroluminescent Phosphors
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    Chapter 67 On the Mechanism of “Forming” and Degradation in DCEL Panels
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    Chapter 68 Application of Sol-Gel Technique to the Preparation of AC Powder Electroluminescent Device
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    Chapter 69 Multicolor ac-Electroluminescent Display Panel Using Red Electroluminescent Phosphors
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    Chapter 70 Electroluminescence in Calcium Sulphide
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    Chapter 71 Organic Electroluminescent Diodes
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    Chapter 72 Electroluminescence in Vacuum-Deposited Organic Thin Films
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    Chapter 73 Conductivity Control of ZnSe Grown by Metalorganic Vapor Phase Epitaxy and Its Application for Injection Electroluminescence
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    Chapter 74 Characteristics of an Efficient ZnS Blue Light-Emitting Diode with a High-Resistivity ZnS Layer Grown by Metalorganic-Chemical-Vapour-Deposition
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    Chapter 75 Electron Injection and Electroluminescence in Graded II–VI Compound Hetero-Junctions
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    Chapter 76 Free Exciton Emission in ZnS x Se 1−x MIS Diodes with High Pulse Current Density
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    Chapter 77 Electroluminescence of ZnSe:Mn MS Diodes in the High Electric Field
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    Chapter 78 Photo- and Electro-Luminescence of Rare Earth (Er, Yb)-Doped GaAs and InP Grown by Metalorganic Chemical Vapor Deposition
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    Chapter 79 Ultraviolet Light-Emitting Diode of Cubic Boron Nitride PN Junction
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    Chapter 80 Electroluminescence Spectrum of Manganese-Doped CuAlS 2
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Title
Electroluminescence
Published by
Springer Berlin Heidelberg, December 2012
DOI 10.1007/978-3-642-93430-8
ISBNs
978-3-64-293432-2, 978-3-64-293430-8
Editors

Shionoya, Shigeo, Kobayashi, Hiroshi