Organic Semiconductor Heterojunctions and Its Application in Organic Light Emitting Diodes

Organic Semiconductor Heterojunctions and Its Application in Organic Light Emitting Diodes
Author: Dongge Ma,Yonghua Chen
Publsiher: Springer
Total Pages: 153
Release: 2017-09-21
Genre: Science
ISBN: 9783662536957

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This book systematically introduces the most important aspects of organic semiconductor heterojunctions, including the basic concepts and electrical properties. It comprehensively discusses the application of organic semiconductor heterojunctions as charge injectors and charge generation layers in organic light-emitting diodes (OLEDs). Semiconductor heterojunctions are the basis for constructing high-performance optoelectronic devices. In recent decades, organic semiconductors have been increasingly used to fabricate heterojunction devices, especially in OLEDs, and the subject has attracted a great deal of attention and evoked many new phenomena and interpretations in the field. This important application is based on the low dielectric constant of organic semiconductors and the weak non-covalent electronic interactions between them, which means that they easily form accumulation heterojunctions. As we know, the accumulation-type space charge region is highly conductive, which is an important property for highly efficient charge generation in their application as charge injector and charge generation layer in OLEDs. This book serves as a valuable reference for researchers and as a textbook for graduate students focusing on the study and development of OLED for display and lighting.

Introduction to Organic Semiconductor Heterojunctions

Introduction to Organic Semiconductor Heterojunctions
Author: Donghang Yan,Haibo Wang,Baoxun Du
Publsiher: John Wiley & Sons
Total Pages: 264
Release: 2010-09-16
Genre: Technology & Engineering
ISBN: 0470825952

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It is well known that most important electronic devices use Schottky junctions and heterojunctions. Unfortunately there is not an advanced book introducing heterojunctions systematically. Introduction to Organic Semiconductor Heterojunctions fills the gap. In this book, the authors provide a comprehensive discussion and systematic introduction on the state-of-the-art technologies as well as application of organic semiconductor heterojunctions. First book to systematically introduce organic heterojunctions Arms readers with theoretical, experimental and applied aspects of organic heterojunctions The Chinese edition of the book is part of the Chinese Academy of Sciences’ Distinguished Young Scholar Scientific Book Series Introduction to Organic Semiconductor Heterojunctions is an ideal and valued reference for researchers and graduate students focusing on organic thin film devices like organic light-emitting diodes (OLEDs), organic photovoltaic (OPV) cells, and organic field-effect transistors (OFETs). Instructors can use the book as a supplementary text for a semiconductor physics or organic electronics course, giving students a better feel for the application of organic thin film devices.

Organic Light Emitting Devices

Organic Light Emitting Devices
Author: Klaus Müllen,Ullrich Scherf
Publsiher: John Wiley & Sons
Total Pages: 426
Release: 2006-05-12
Genre: Science
ISBN: 9783527607235

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This high-class book reflects a decade of intense research, culminating in excellent successes over the last few years. The contributions from both academia as well as the industry leaders combine the fundamentals and latest research results with application know-how and examples of functioning displays. As a result, all the four important aspects of OLEDs are covered: - syntheses of the organic materials - physical theory of electroluminescence and device efficiency - device conception and construction - characterization of both materials and devices. The whole is naturally rounded off with a look at what the future holds in store. The editor, Klaus Muellen, is director of the highly prestigious MPI for polymer research in Mainz, Germany, while the authors include Nobel Laureate Alan Heeger, one of the most notable founders of the field, Richard Friend, as well as Ching Tang, Eastman Kodak's number-one OLED researcher, known throughout the entire community for his key publications.

Optoelectronic Organic Inorganic Semiconductor Heterojunctions

Optoelectronic Organic Inorganic Semiconductor Heterojunctions
Author: Ye Zhou
Publsiher: CRC Press
Total Pages: 403
Release: 2021-01-20
Genre: Technology & Engineering
ISBN: 9781000325751

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Optoelectronic Organic-Inorganic Semiconductor Heterojunctions summarizes advances in the development of organic-inorganic semiconductor heterojunctions, points out challenges and possible solutions for material/device design, and evaluates prospects for commercial applications. Introduces the concept and basic mechanism of semiconductor heterojunctions Describes a series of organic-inorganic semiconductor heterojunctions with desirable electrical and optical properties for optoelectronic devices Discusses typical devices such as solar cells, photo-detectors, and optoelectronic memories Outlines the materials and device challenges as well as possible strategies to promote the commercial translation of semiconductor heterojunctions-based optoelectronic devices Aimed at graduate students and researchers working in solid-state materials and electronics, this book offers a comprehensive yet accessible view of the state of the art and future directions.

Optoelectronic Organic Inorganic Semiconductor Heterojunctions

Optoelectronic Organic Inorganic Semiconductor Heterojunctions
Author: Ye Zhou
Publsiher: CRC Press
Total Pages: 382
Release: 2021-01-19
Genre: Technology & Engineering
ISBN: 9781000325713

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Optoelectronic Organic-Inorganic Semiconductor Heterojunctions summarizes advances in the development of organic-inorganic semiconductor heterojunctions, points out challenges and possible solutions for material/device design, and evaluates prospects for commercial applications. Introduces the concept and basic mechanism of semiconductor heterojunctions Describes a series of organic-inorganic semiconductor heterojunctions with desirable electrical and optical properties for optoelectronic devices Discusses typical devices such as solar cells, photo-detectors, and optoelectronic memories Outlines the materials and device challenges as well as possible strategies to promote the commercial translation of semiconductor heterojunctions-based optoelectronic devices Aimed at graduate students and researchers working in solid-state materials and electronics, this book offers a comprehensive yet accessible view of the state of the art and future directions.

Organic Semiconductors

Organic Semiconductors
Author: Dharani Sabba
Publsiher: Arcler Press
Total Pages: 0
Release: 2017-11
Genre: Organic semiconductors
ISBN: 1773610554

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This book is a compilation of research articles related to the application of organic semiconductor materials in the field of electronics such as field effect transistors, light emitting diodes and in harvesting solar energy via solar cells. Chapter 1 acquaints the reader with the progress made so far and future potential in the field of organic semiconductors highlighting their employment as organic light emitting diodes (OLEDs) for flexible electronics and lighting, as organic field effect transistors (OFETs) and as organic photovoltaics. In chapter 2, a novel technology of utilizing aluminum laminations as moisture barriers against ambient aggressors in order to enhance device performance, especially in organic solar cells and OLEDs has been demonstrated. Chapters 3-5 focus on the fabrication routes of organic electronics such as OFETs and organic solar cells. The further chapters of this book are broadly classified into three categories addressing the three key applications of these materials - OFETs, organic solar cells and OLEDs. In chapters 6-13, the various materials, their synthesis, properties, processing parameters and their application in OFETs has been illustrated. Application of OFETs in detecting blood gases such as ammonia has been shown in chapter 13. Chapters 14- focuses on critical light instability in CB/DIO processed PBDTTT-EFT: PC71BM organic photovoltaic devices".I strongly believe that this book will help students, engineers and researchers working in the field of electrical engineering, chemistry, physics and material science to build upon their existing knowledge. The collection of articles and review articles is upto date and the reader can keep themselves abreast with the latest developments in the field of organic semiconductors through this book.

Solution Processable Components for Organic Electronic Devices

Solution Processable Components for Organic Electronic Devices
Author: Beata Luszczynska,Krzysztof Matyjaszewski,Jacek Ulanski
Publsiher: John Wiley & Sons
Total Pages: 688
Release: 2019-06-11
Genre: Technology & Engineering
ISBN: 9783527814947

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Provides first-hand insights into advanced fabrication techniques for solution processable organic electronics materials and devices The field of printable organic electronics has emerged as a technology which plays a major role in materials science research and development. Printable organic electronics soon compete with, and for specific applications can even outpace, conventional semiconductor devices in terms of performance, cost, and versatility. Printing techniques allow for large-scale fabrication of organic electronic components and functional devices for use as wearable electronics, health-care sensors, Internet of Things, monitoring of environment pollution and many others, yet-to-be-conceived applications. The first part of Solution-Processable Components for Organic Electronic Devices covers the synthesis of: soluble conjugated polymers; solution-processable nanoparticles of inorganic semiconductors; high-k nanoparticles by means of controlled radical polymerization; advanced blending techniques yielding novel materials with extraordinary properties. The book also discusses photogeneration of charge carriers in nanostructured bulk heterojunctions and charge carrier transport in multicomponent materials such as composites and nanocomposites as well as photovoltaic devices modelling. The second part of the book is devoted to organic electronic devices, such as field effect transistors, light emitting diodes, photovoltaics, photodiodes and electronic memory devices which can be produced by solution-based methods, including printing and roll-to-roll manufacturing. The book provides in-depth knowledge for experienced researchers and for those entering the field. It comprises 12 chapters focused on: ? novel organic electronics components synthesis and solution-based processing techniques ? advanced analysis of mechanisms governing charge carrier generation and transport in organic semiconductors and devices ? fabrication techniques and characterization methods of organic electronic devices Providing coverage of the state of the art of organic electronics, Solution-Processable Components for Organic Electronic Devices is an excellent book for materials scientists, applied physicists, engineering scientists, and those working in the electronics industry.

Physics of Organic Semiconductors

Physics of Organic Semiconductors
Author: Wolfgang Brütting
Publsiher: John Wiley & Sons
Total Pages: 554
Release: 2006-05-12
Genre: Science
ISBN: 9783527606795

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Filling the gap in the literature currently available, this book presents an overview of our knowledge of the physics behind organic semiconductor devices. Contributions from 18 international research groups cover various aspects of this field, ranging from the growth of organic layers and crystals, their electronic properties at interfaces, their photophysics and electrical transport properties to the application of these materials in such different devices as organic field-effect transistors, photovoltaic cells and organic light-emitting diodes. From the contents: * Excitation Dynamics in Organic Semiconductors * Organic Field-Effect Transistors * Spectroscopy of Organic Semiconductors * Interfaces between Organic Semiconductors and Metals * Analysis and Modeling of Devices * Exciton Formation and Energy Transfer in Organic Light Emitting Diodes * Deposition and Characterization