
Organic Electroluminescence
From Molecular Structure to Device Performance
- 458 pages
- English
- PDF
- Available on iOS & Android
About this book
Unique reference on the fundamentals, applications, and latest research in electroluminescence of organic molecules
Organic Electroluminescence provides a comprehensive overview of organic electroluminescent materials from their structure-property relationships to the outlook of improved device performance. Divided into three parts, the first section of the book covers fundamental aspects of OLEDs such as history, structures, properties, and operating and aging mechanisms. The second section provides quantum chemical and experimental insights into correlations between device performance, material characteristics, molecular physical parameters, and molecular structure. The last section is devoted to improving device performance in real world applications using molecular and device simulations.
Featuring contributions from experts from around the world, Organic Electroluminescence discusses sample topics including:
- Fundamental concepts in the fields of display, organic electronics, molecular photochemistry, and quantum chemistry
- Device fabrication, characterization and simulation techniques
- Physical and chemical processes in OLEDs including charge injection and transport, exciton generation and decay, reversible dipole reorientation, and chemical reactions
- Physical and chemical properties of organic semiconductors in solutions and thin-films including photoluminescence quantum yield, excited-state lifetime, and redox potential
- Single-molecule and condensed-matter simulations including vertical transition, nonradiative decay, spin-orbital and spin-phonon coupling, bond dissociation and charge transfer
Organic Electroluminescence delivers advanced information for professionals seeking a thorough reference on the subject and for students learning about OLEDs.
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Information
Table of contents
- Cover
- Half Title Page
- Title Page
- Copyright
- Contents
- List of Contributors
- Preface
- Chapter 1: Fundamentals of Organic Light-Emitting Diode
- Chapter 2: Fabrication Techniques from OLED Devices to Displays
- Chapter 3: Physical Processes in OLEDs
- Chapter 4: Chemical Reactions in Organic Light-Emitting Diodes
- Chapter 5: Physical and Chemical Properties of Organic Semiconductors in Solutions and Thin Films
- Chapter 6: Basic Physical Parameters of Single Emitting Molecules
- Chapter 7: Molecular Interactions in Organic Semiconductor Thin Films
- Chapter 8: Quantum–Chemical Insight into Electronic Excitation
- Chapter 9: Single Molecule Simulation
- Chapter 10: Condensed-Matter Simulation
- Chapter 11: Studies of OLED Device Performance Using Kinetic Monte Carlo Simulations
- Chapter 12: Optical Simulation and Optimization of OLEDs
- Index
- EULA