Wide Bandgap Light Emitting Materials And Devices

Wide Bandgap Light Emitting Materials And Devices
Author: Gertrude F. Neumark,Igor L. Kuskovsky,Hongxing Jiang
Publsiher: John Wiley & Sons
Total Pages: 228
Release: 2008-01-08
Genre: Science
ISBN: 9783527617081

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Wide bandgap light emitters include laser diodes and light-emitting diodes (LED), the most modern diodes widely used in current technologies as microelectronics and optoelectronics. Rapid advances have been made during the last few years, with the result that more research is devoted to applications in line with the expanding market for optoelectronics. This volume deals with recent research results on wide bandgap light emitting materials, introducing new concepts for devices based on these materials. The editors, scientists with the best reputations, have invited authors from different institutions who are acknowledged researchers in the field as well as being involved in industrial applications. They represent several lines of research: III-nitride compounds, ZnO and ZnSe, the most promising materials for device applications.

Wide Bandgap Semiconductor Materials and Devices 12

Wide Bandgap Semiconductor Materials and Devices 12
Author: J. A. Bardwell
Publsiher: The Electrochemical Society
Total Pages: 222
Release: 2011-04
Genre: Technology & Engineering
ISBN: 9781566778671

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This issue of ECS Transactions focuses on issues pertinent to development of wide-bandgap semiconductor materials and devices, encompassing inorganic wide-bandgap semiconductors: III-nitrides (e. g. gallium nitride), II-oxides, SiC, diamond, II-VI, and also emerging materials such as organic-inorganic nanoscale structures.

Organic Light emitting Materials and Devices

Organic Light emitting Materials and Devices
Author: Anonim
Publsiher: Unknown
Total Pages: 386
Release: 1998
Genre: Electroluminescent devices
ISBN: UOM:39015048146875

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Organic Light Emitting Materials and Devices

Organic Light Emitting Materials and Devices
Author: Zhigang Rick Li
Publsiher: CRC Press
Total Pages: 813
Release: 2017-12-19
Genre: Science
ISBN: 9781439882801

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Organic Light-Emitting Materials and Devices provides a single source of information covering all aspects of OLEDs, including the systematic investigation of organic light-emitting materials, device physics and engineering, and manufacturing and performance measurement techniques. This Second Edition is a compilation of the advances made in recent years and of the challenges facing the future development of OLED technology. Featuring chapters authored by internationally recognized academic and industrial experts, this authoritative text: Introduces the history, fundamental physics, and potential applications of OLEDs Reviews the synthesis, properties, and device performance of electroluminescent materials used in OLEDs Reflects the current state of molecular design, exemplifying more than 600 light-emitting polymers and highlighting the most efficient materials and devices Explores small molecules-based OLEDs, detailing hole- and electron-injection and electron-transport materials, electron- and hole-blocking materials, sensitizers, and fluorescent and phosphorescent light-emitting materials Describes solution-processable phosphorescent polymer LEDs, energy transfer processes, polarized OLEDs, anode materials, and vapor deposition manufacturing techniques employed in OLED fabrication Discusses flexible display, the backplane circuit technology for organic light-emitting displays, and the latest microstructural characterization and performance measurement techniques Contains abundant diagrams, device configurations, and molecular structures clearly illutrating the presented ideas Organic Light-Emitting Materials and Devices, Second Edition offers a comprehensive overview of the OLED field and can serve as a primary reference for those needing additional information in any particular subarea of organic electroluminescence. This book should attract the attention of materials scientists, synthetic chemists, solid-state physicists, and electronic device engineers, as well as industrial managers and patent lawyers engaged in OLED-related business areas.

Wide Bandgap Semiconductor Materials and Devices 19

Wide Bandgap Semiconductor Materials and Devices 19
Author: J. Hite,V. Chakrapani,J. Zavada,T. J. Anderson,S. Kilgore
Publsiher: The Electrochemical Society
Total Pages: 130
Release: 2018-05-04
Genre: Science
ISBN: 9781607688358

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Gallium Nitride and Related Wide Bandgap Materials and Devices

Gallium Nitride and Related Wide Bandgap Materials and Devices
Author: R. Szweda
Publsiher: Elsevier
Total Pages: 446
Release: 2000-07-07
Genre: Technology & Engineering
ISBN: 0080532306

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The second edition of Gallium Nitride & Related Wide Bandgap Materials and Devices provides a detailed insight into the global developments in GaN, SiC and other optoelectronic materials. This report also examines the implication for both suppliers and users of GaN technology. For a PDF version of the report please call Tina Enright on +44 (0) 1865 843008 for price details.

Wide Bandgap Semiconductor Electronics And Devices

Wide Bandgap Semiconductor Electronics And Devices
Author: Uttam Singisetti,Towhidur Razzak,Yuewei Zhang
Publsiher: World Scientific
Total Pages: 258
Release: 2019-12-10
Genre: Technology & Engineering
ISBN: 9789811216497

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'This book is more suited for researchers already familiar with WBS who are interested in developing new WBG materials and devices since it provides the latest developments in new materials and processes and trends for WBS and UWBS technology.'IEEE Electrical Insulation MagazineWith the dawn of Gallium Oxide (Ga2O₃) and Aluminum Gallium Nitride (AlGaN) electronics and the commercialization of Gallium Nitride (GaN) and Silicon Carbide (SiC) based devices, the field of wide bandgap materials and electronics has never been more vibrant and exciting than it is now. Wide bandgap semiconductors have had a strong presence in the research and development arena for many years. Recently, the increasing demand for high efficiency power electronics and high speed communication electronics, together with the maturity of the synthesis and fabrication of wide bandgap semicon-ductors, has catapulted wide bandgap electronics and optoelectronics into the mainstream.Wide bandgap semiconductors exhibit excellent material properties, which can potentially enable power device operation at higher efficiency, higher temperatures, voltages, and higher switching speeds than current Si technology. This edited volume will serve as a useful reference for researchers in this field — newcomers and experienced alike.This book discusses a broad range of topics including fundamental transport studies, growth of high-quality films, advanced materials characterization, device modeling, high frequency, high voltage electronic devices and optical devices written by the experts in their respective fields. They also span the whole spectrum of wide bandgap materials including AlGaN, Ga2O₃and diamond.

Wide Bandgap Semiconductors for High Power High Frequency and High Temperature

Wide Bandgap Semiconductors for High Power  High Frequency and High Temperature
Author: Steven Denbaars,John Palmour,Michael Shur,Michael Spencer
Publsiher: Cambridge University Press
Total Pages: 584
Release: 2014-06-05
Genre: Technology & Engineering
ISBN: 1107413648

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Wide-bandgap semiconductors have a long and illustrious history, starting with the first paper on SiC light-emitting diodes published in 1907. Since then, interest in wide-bandgap semiconductors has skyrocketed. Improved material quality, important breakthroughs both in SiC and GaN technologies, and the emergence of blue GaN-based lasers, have stimulated this progress. To provide a fairly complete picture of this important field, most of the work presented at the conference is included in the volume. In addition, invited papers present an excellent overview of the current state of the art and offer projections for future developments. Topics include: GaN materials and devices; crystal growth; SiC materials and devices; characterization of wide-bandgap semiconductors; and processing characterization and properties of wide-bandgap materials.