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Electronic Processes in Organic Electronics: Bridging Nanostructure, Electronic States and Device Properties

✍ Scribed by Hisao Ishii, Kazuhiro Kudo, Takashi Nakayama, Nobuo Ueno (eds.)


Publisher
Springer Japan
Year
2015
Tongue
English
Leaves
427
Series
Springer Series in Materials Science 209
Edition
1
Category
Library

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✦ Synopsis


The book covers a variety of studies of organic semiconductors, from fundamental electronic states to device applications, including theoretical studies. Furthermore, innovative experimental techniques, e.g., ultrahigh sensitivity photoelectron spectroscopy, photoelectron yield spectroscopy, spin-resolved scanning tunneling microscopy (STM), and a material processing method with optical-vortex and polarization-vortex lasers, are introduced. As this book is intended to serve as a textbook for a graduate level course or as reference material for researchers in organic electronics and nanoscience from electronic states, fundamental science that is necessary to understand the research is described. It does not duplicate the books already written on organic electronics, but focuses mainly on electronic properties that arise from the nature of organic semiconductors (molecular solids). The new experimental methods introduced in this book are applicable to various materials (e.g., metals, inorganic and organic materials). Thus the book is also useful for experts working in physics, chemistry, and related engineering and industrial fields.

✦ Table of Contents


Front Matter....Pages i-xiii
Front Matter....Pages 1-1
Fundamental Aspects and the Nature of Organic Semiconductor....Pages 3-9
Ultraviolet Photoelectron Spectroscopy (UPS) I: Band Dispersion Measurements of β€œInsulating” Organic Single Crystals....Pages 11-26
Ultraviolet Photoelectron Spectroscopy (UPS) II: Electron–Phonon Coupling and Hopping Mobility....Pages 27-49
Ultraviolet Photoelectron Spectroscopy (UPS) III: Direct Study of β€œInvisible” Band Gap States by Ultrahigh-Sensitivity UPS....Pages 51-67
Pentacene Becomes Mott–Hubbard Insulator by Potassium Doping....Pages 69-87
Vertical Bonding Distances Impact Organic-Metal Interface Energetics....Pages 89-107
Structure Matters: Combining X-Ray Scattering and Ultraviolet Photoelectron Spectroscopy for Studying Organic Thin Films....Pages 109-129
Photoelectron Yield Spectroscopy for Organic Materials and Interfaces....Pages 131-155
Front Matter....Pages 157-157
Fabrication and Characterization of Organic Devices....Pages 159-184
Mobility Limiting Factors in Practical Polycrystalline Organic Thin Films....Pages 185-225
Materials for Organic Light Emitting Diode (OLED)....Pages 227-251
DNA Electronics and Photonics....Pages 253-281
Front Matter....Pages 283-283
Theory of Photoelectron Spectroscopy....Pages 285-301
Theory of Metal-Atom Diffusion in Organic Systems....Pages 303-317
Numerical Approach to Charge Transport Problems on Organic Molecular Crystals....Pages 319-347
Front Matter....Pages 349-349
Function of Conjugated Ο€-Electronic Carbon Walled Nanospaces Tuned by Molecular Tiling....Pages 351-378
Understanding of Unique Thermal Phase Behavior of Room Temperature Ionic Liquids: 1-Butyl-3-Methylimdiazolium Hexafluorophosphate as a Great Example....Pages 379-401
Single Molecular Spintronics....Pages 403-416
Vortex Lasers Twist Materials to Form Chiral Nanostructures....Pages 417-427
Back Matter....Pages 429-432

✦ Subjects


Nanoscale Science and Technology; Nanotechnology and Microengineering; Nanotechnology; Electronic Circuits and Devices; Semiconductors


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