
Optoelectronics
Advanced Materials and Devices
- 496 pages
- English
- PDF
- Available on iOS & Android
Optoelectronics
Advanced Materials and Devices
About this book
Optoelectronics - Advanced Materials and Devices is a second edition following the initial Optoelectronics - Materials and Techniques book published in 2011 as part of the InTech collection of international works on optoelectronics. Optoelectronics, as the discipline devoted to the study and application of electronic devices that emit, detect, and otherwise control light, has widely proliferated globally and enabled many of today's modern conveniences. Because of this ubiquity, new applications and novel optical phenomena continue to drive innovation. Accordingly, as with the first book of the collection, this book covers recent achievements by specialists around the world. The growing number of countries participating in this endeavor including now Brazil, Canada, China, Egypt, France, Germany, India, Italy, Japan, Malaysia, Mexico, Moldova, Morocco, Netherlands, Portugal, Romania, Saudi Arabia, South Korea, Taiwan, Ukraine, USA, and Vietnam as well as joint participation of the US and Moldova scientists in edition of this book and writing one of its Chapters testify to the unifying effect of science. An interested reader will find in the book the description of properties and applications employing organic and inorganic materials, such as different polymers, oxides and semiconductors, as well as the methods of fabrication and analysis of operation and regions of application of modern optoelectronic devices.
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Table of contents
- Optoelectronics - Advanced Materials and Devices
- Contents
- Preface
- Chapter 1 Advanced Light Emissive Device Structures
- Chapter 2 ZnO-Based Light-Emitting Diodes
- Chapter 3 Technological Challenges for Efficient AlGaAs Nonlinear Sources on Chip
- Chapter 4 InP/InGaAS Symmetric Gain Optoelectronic Mixers
- Chapter 5 Preparation and Characterization of Nanostructured TiO2 Thin Films by Hydrothermal and Anodization Methods
- Chapter 6 Correlation Between Band Structure and Magneto- Transport Properties in n-type HgTe/CdTe Two-Dimensional Nanostructure Superlattice. Application to Far-Infrared Detection
- Chapter 7 Advances in Infrared Detector Array Technology
- Chapter 8 Theoretical Analysis of the Spectral Photocurrent Distribution of Semiconductors
- Chapter 9 Recent Progress in the Understanding and Manipulation of Morphology in Polymer: Fullerene Photovoltaic Cells
- Chapter 10 Dewetting Stability of ITO Surfaces in Organic Optoelectronic Devices
- Chapter 11 Organo-Soluble Semi-Alicyclic Polyimides Derived from Substituted-Tetralin Dianhydrides and Aromatic Diamines: Synthesis, Characterization and Potential Applications as Alignment Layer for TFT-LCDs
- Chapter 12 Aromatic Derivatives Based Materials for Optoelectronic Applications
- Chapter 13 Optoelectronic Oscillators Phase Noise and Stability Measurements
- Chapter 14 Design and Modeling of Optoelectronic Photocurrent Reconfigurable (OPR) Multifunctional Logic Devices (MFLD) as the Universal Circuitry Basis for Advanced Parallel High- Performance Processing
- Chapter 15 All-Optical Autonomous First-in–First-out Buffer Managed with Carrier Sensing of Output Packets
- Chapter 16 A Method and Electronic Device to Detect the Optoelectronic Scanning Signal Energy Centre
- Chapter 17 Opto-Electronic Packaging
- Chapter 18 III-V Multi-Junction Solar Cells
- Chapter 19 Use of Optoelectronic Plethysmography in Pulmonary Rehabilitation and Thoracic Surgery