Charge Injection Into Organic Semiconductors

Charge Injection Into Organic Semiconductors PDF Author: Teunis van Woudenbergh
Publisher:
ISBN: 9789036722773
Category :
Languages : en
Pages : 102

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Charge Injection Into Organic Semiconductors

Charge Injection Into Organic Semiconductors PDF Author: Teunis van Woudenbergh
Publisher:
ISBN: 9789036722773
Category :
Languages : en
Pages : 102

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Charge Injection and Transport in Organic Semiconductors

Charge Injection and Transport in Organic Semiconductors PDF Author: Yulong Shen
Publisher:
ISBN:
Category : Charge transfer devices (Electronics)
Languages : en
Pages : 262

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Charge Injection and Transport in Organic Semiconductors

Charge Injection and Transport in Organic Semiconductors PDF Author: Michael Kiy
Publisher:
ISBN:
Category :
Languages : en
Pages : 110

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Charge Injection and Transport in Organic Semiconductors

Charge Injection and Transport in Organic Semiconductors PDF Author: Stephen Michael Logan
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Organic Semiconductors for Optoelectronics

Organic Semiconductors for Optoelectronics PDF Author: Hiroyoshi Naito
Publisher: John Wiley & Sons
ISBN: 1119146100
Category : Science
Languages : en
Pages : 388

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Book Description
Comprehensive coverage of organic electronics, including fundamental theory, basic properties, characterization methods, device physics, and future trends Organic semiconductor materials have vast commercial potential for a wide range of applications, from self-emitting OLED displays and solid-state lighting to plastic electronics and organic solar cells. As research in organic optoelectronic devices continues to expand at an unprecedented rate, organic semiconductors are being applied to flexible displays, biosensors, and other cost-effective green devices in ways not possible with conventional inorganic semiconductors. Organic Semiconductors for Optoelectronics is an up-to-date review of the both the fundamental theory and latest research and development advances in organic semiconductors. Featuring contributions from an international team of experts, this comprehensive volume covers basic properties of organic semiconductors, characterization techniques, device physics, and future trends in organic device development. Detailed chapters provide key information on the device physics of organic field-effect transistors, organic light-emitting diodes, organic solar cells, organic photosensors, and more. This authoritative resource: Provides a clear understanding of the optoelectronic properties of organic semiconductors and their influence to overall device performance Explains the theories behind relevant mechanisms in organic semiconducting materials and in organic devices Discusses current and future trends and challenges in the development of organic optoelectronic devices Reviews electronic properties, device mechanisms, and characterization techniques of organic semiconducting materials Covers theoretical concepts of optical properties of organic semiconductors including fluorescent, phosphorescent, and thermally-assisted delayed fluorescent emitters An important new addition to the Wiley Series in Materials for Electronic & Optoelectronic Applications, Organic Semiconductors for Optoelectronics bridges the gap between advanced books and undergraduate textbooks on semiconductor physics and solid-state physics. It is essential reading for academic researchers, graduate students, and industry professionals involved in organic electronics, materials science, thin film devices, and optoelectronics research and development.

Microscopic View of Charge Injection in a Model Organic Semiconductor

Microscopic View of Charge Injection in a Model Organic Semiconductor PDF Author: William Richard Silveira
Publisher:
ISBN:
Category :
Languages : en
Pages : 630

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Physics of Organic Semiconductors

Physics of Organic Semiconductors PDF Author: Wolfgang Brütting
Publisher: John Wiley & Sons
ISBN: 3527654968
Category : Technology & Engineering
Languages : en
Pages : 660

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Book Description
The field of organic electronics has seen a steady growth over the last 15 years. At the same time, our scientific understanding of how to achieve optimum device performance has grown, and this book gives an overview of our present-day knowledge of the physics behind organic semiconductor devices. Based on the very successful first edition, the editors have invited top scientists from the US, Japan, and Europe to include the developments from recent years, covering such fundamental issues as: - growth and characterization of thin films of organic semiconductors, - charge transport and photophysical properties of the materials as well as their electronic structure at interfaces, and - analysis and modeling of devices like organic light-emitting diodes or organic lasers. The result is an overview of the field for both readers with basic knowledge and for an application-oriented audience. It thus bridges the gap between textbook knowledge largely based on crystalline molecular solids and those books focusing more on device applications.

Conjugated Polymer And Molecular Interfaces

Conjugated Polymer And Molecular Interfaces PDF Author: William R. Salaneck
Publisher: CRC Press
ISBN: 9780203910870
Category : Science
Languages : en
Pages : 896

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Book Description
Defines the state-of-the-art in interface science for electronic applications of organic materials. Updates understanding of the foundaiton of interfacial properties. Describes novel electronic devices created from conjugated polymers and organic molecular solids.

Electronic Processes in Organic Semiconductors

Electronic Processes in Organic Semiconductors PDF Author: Anna Köhler
Publisher: John Wiley & Sons
ISBN: 3527332928
Category : Technology & Engineering
Languages : en
Pages : 436

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Book Description
The first advanced textbook to provide a useful introduction in a brief, coherent and comprehensive way, with a focus on the fundamentals. After having read this book, students will be prepared to understand any of the many multi-authored books available in this field that discuss a particular aspect in more detail, and should also benefit from any of the textbooks in photochemistry or spectroscopy that concentrate on a particular mechanism. Based on a successful and well-proven lecture course given by one of the authors for many years, the book is clearly structured into four sections: electronic structure of organic semiconductors, charged and excited states in organic semiconductors, electronic and optical properties of organic semiconductors, and fundamentals of organic semiconductor devices.

Mechanistic Studies of Charge Injection from Metallic Electrodes Into Organic Semiconductors Mediated by Ionic Functionalities

Mechanistic Studies of Charge Injection from Metallic Electrodes Into Organic Semiconductors Mediated by Ionic Functionalities PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Metal-organic semiconductor interfaces are important because of their ubiquitous role in determining the performance of modern electronics such as organic light emitting diodes (OLEDs), fuel cells, batteries, field effect transistors (FETs), and organic solar cells. Interfaces between metal electrodes required for external wiring to the device and underlying organic structures directly affect the charge carrier injection/collection efficiency in organic-based electronic devices primarily due to the mismatch between energy levels in the metal and organic semiconductor. Environmentally stable and cost-effective electrode materials, such as aluminum and gold typically exhibit high potential barriers for charge carriers injection into organic devices leading to increased operational voltages in OLEDs and FETs and reduced charge extraction in photovoltaic devices. This leads to increased power consumption by the device, reduced overall efficiency, and decreased operational lifetime. These factors represent a significant obstacle for development of next generation of cheap and energy-efficient components based on organic semiconductors. It has been noticed that introduction of organic materials with conjugated backbone and ionic pendant groups known as conjugated poly- and oligoelectrolytes (CPEs and COEs), enables one to reduce the potential barriers at the metal-organic interface and achieve more efficient operation of a device, however exact mechanisms of the phenomenon have not been understood. The goal of this project was to delineate the function of organic semiconductors with ionic groups as electron injection layers. The research incorporated a multidisciplinary approach that encompassed the creation of new materials, novel processing techniques, examination of fundamental electronic properties and the incorporation of the resulting knowledgebase into development of novel organic electronic devices with increased efficiency, environmental stability, and reduced cost. During the execution of the project, main efforts were focused on the synthesis of new charge-bearing organic materials, such as CPEs and COEs, and block copolymers with neutral and ionic segments, studies of mechanisms responsible for the charge injection modulation in devices with ionic interlayers, and use of naturally occurring charged molecules for creation of enhanced devices. The studies allowed PIs to demonstrate the usefulness of the proposed approach for the improvement of operational parameters in model OLED and FET systems resulting in increased efficiency, decreased contact resistance, and possibility to use stable metals for fabrication of device electrodes. The successful proof-of-the-principle results potentially promise development of light-weight, low fabrication cost devices which can be used in consumer applications such as displays, solar cells, and printed electronic devices. Fundamental mechanisms responsible for the phenomena observed have been identified thus advancing the fundamental knowledgebase.