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01.The Turin Shroud: Optical Research in the Past Present and Future
02.Photonics Research Developments
03.Advances in Laser and Optics Research, Volume 3
04.Frontiers in Lasers and Electro-Optics Research
05.Lasers, Optics and Electro-Optics Research Trends
06.Frontiers in Optical Technology: Materials and Devices
07.Handbook of Light Emitting and Schottky Diode Research
08.Lasers and Electro-Optics Research at the Cutting Edge
09.Optical Solitons in Nonlinear Micro Ring Resonators: Unexpected Results and Applications
10.Phase Transitions Induced by Short Laser Pulses
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Handbook of Light Emitting and Schottky Diode Research
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Editors: N. P. Chen
Book Description:
A light-emitting-diode (LED) is a semiconductor diode that emits light when an electric current is applied in the forward direction of the device, as in the simple LED circuit. The effect is a form of electroluminescence where incoherent and narrow-spectrum light is emitted from the p-n junction.LEDs are widely used as indicator lights on electronic devices and increasingly in higher power applications such as flashlights and area lighting. An LED is usually a small area (less than 1 mm2) light source, often with optics added to the chip to shape its radiation pattern and assist in reflection. The color of the emitted light depends on the composition and condition of the semiconducting material used, and can be infrared, visible, or ultraviolet. Besides lighting, interesting applications include using UV-LEDs for sterilization of water and disinfection of devices, and as a grow light to enhance photosynthesis in plants. This new book presents the latest research from around the globe in the field of LED research and Schottky diodes.

Table of Contents:

Chapter 1. Rare Earth Metals and their Complexes in Organic Light Emitting Diodes, pp. 1-65
(Mikhail N. Bochkarev, Marina A. Katkova, G.A. Razuvaev Institute of Organometallic Chemistry of Russian Academy of Sciences, Nizhny Novgorod, Russia)

Chapter 2. Highly Efficient Electrophosphorescent Organic Light-Emitting Diodes Based on Iridium (III) Complexes Containing Carbazole Units, pp. 67-97
(Wai-Yeung Wong and Cheuk-Lam Ho, Dept. of Chemistry and Centre for Advanced Luminescence Materials, Hong Kong Baptist Univ., Hong Kong, P.R. China)

Chapter 3. Characterization of Light-Emitting Conjugated Polymers by Electrochemical Methods, pp. 99-132
(F. Montilla, Instituto Univ. de Materiales de Alicante, Univ. de Alicante, Alicante, Spain, C.R. Mateo, R. Mallavia, Instituto de Biologia Molecular y Celular, Univ. Miguel Hernandez, Alicante, Spain)

Chapter 4. Basics of Light Emitting Diodes, Characterizations and Applications, pp. 133-168
(Subhash Chandra Singh, Laser Spectroscopy & Nanomaterials Lab, Department of Physics, University of Allahabad, Allahabad, India)

Chapter 5. Novel Applications of Absorbance Based Light Emitting Diode Optical Devices, pp.169-198
(Martina O'Toole, Robert Byrne and Dermot Diamond, Adaptive Sensors Group, National Centre for Sensor Research, School of Chemical Sciences, Dublin City Univ., Dublin)

Chapter 6. Recent Progress of White Organic Light-Emitting Devices, pp. 199-242
(Junsheng Yu, Lu Li, Yadong Jiang, State Key Lab of Electronic Thin Films and Integrated Devices, School of Optoelectronic Information, Univ. of Electronic Science and Technology of China (UESTC), Chengdu, P.R. China)

Chapter 7. Device Architectures for High Efficiency in Phosphorescent Organic Light Emitting Diodes, pp. 243-259
(Jun Yeob Lee, Kyoung Soo Yook, Soon Ok Jeon, Chul Woong Joo, Dept. of Polymer Science and Engineering, Dankook Univ., Gyeonggi, Korea)

Chapter 8. New Conjugated Polyimides with Special Architecture: Photoluminescence of violet, blue and green polyimides in solution and in blend with poly (methylmethacrylate), pp. 261-312
(Eugenia Grabiec1, Ewa Schab-Balcerzak1, Bozena Jarzabek1, Wojciech Domagala2 and Agnieszka Iwan1*,
1Centre of Polymer and Carbon Materials, Polish Academy of Science, Poland, 2Faculty of Chemistry, Silesian University of Technology, Poland)

Chapter 9. Laser Metrology Modeling for Object Contouring Based on Algorithms of Artificial Intelligence, pp.313-339
(J. Apolinar Muñoz-Rodríguez, Centro de Investigaciones en Optica, A. C. Leon, Gto, Mexico)

Chapter 10. Computational Study of Novel Tris-(5-aryl-8-hydroxyquinolato) Aluminum (III) Complexes with Use in Molecular Electronics, pp. 341-366
(Francisco Núñez-Zarur and Ricardo Vivas-Reyes, Contribution from the Grupo de Química Cuántica y Teórica, Facultad de Ciencias Exactas y Naturales, Universidad de Cartagena, Campus de Zaragocilla, Cartagena, Colombia)

Chapter 11. Utilizing LED Technology for Arthropod Pest Control, pp. 367-381
(Takeshi Suzuki and Makio Takeda, Graduate School of Science and Technology, Kobe Univ., Kobe, Japan)

Chapter 12. Nanostructured Nitride Light-Emitting Diodes, pp. 383-395
(Hoi Wai Choi, Dept. of Electrical and Electronic Engineering, Univ. of Hong Kong)

Chapter 13. Electrophoretic Deposition: A Novel Route to Make Polymer Electronic Devices, pp. 397-411
(Kazuya Tada, Division of Electrical Engineering, Univ. of Hyogo, Himeji, Hyogo, Japan)

Chapter 14. A Tunnel Transit-Time Light Emitting Diode as a New Type of Si:Er LEDs with Impact Excitation of Er3+, pp. 413-426
(V. Shmagin1, D. Remizov1, V. Kuznetsov1,2, V. Kozlov1, S. Obolensky1,2 and Z. Krasilnik 1., 1Institute for Physics of Microstructures RAS, Nizhni Novgorod 603950, Russia
2University of Nizhni Novgorod, Nizhni Novgorod 603950, Russia)

Chapter 15. Recent Progress in ZnTe-based green LED, pp. 427-444
(Tooru Tanaka, Synchrotron Light Application Center, Saga University,
Mitsuhiro Nishio, Department of Electrical and Electronic Engineering, Saga University, Hiroshi Ogawa, Synchrotron Light Application Center, Saga University)

Chapter 16. Using Light-Emitting Diodes to Load Ions for Ion Trapping, pp. 445-455
(Utako Tanaka and Shinji Urabe, Utako Tanaka, Osaka University)

Chapter 17. Titania-Germanium Nanocomposite for Next Generation Light Emitting Diodes, pp. 457-467
(Sukti Chatterjee, Center for Composite Materials and Dept. of Materials Science and Engineering, Univ. of Delaware, Newark, Delaware)

Chapter 18. Enhanced Extraction Efficiency of GaN-Based Vertical Type LED Using Cone-Shape Patterned Sapphire Substrate, pp. 469-478
(Jae-Hoon Lee, Lighting Module Group, OS Division, Samsung Electro-Mechanics Co., Ltd, Korea, Jung-Hee Lee, School of Electronic Engineering & Computer Science, Kyungpook National Univ., Daegu, Korea)

Chapter 19. Pseudo-Schottky Diodes: An Original Means of Improving Gas Sensor Applications Bases on Schottky Diodes, pp. 479-507
(C. Varenne, Université Blaise Pascal, Clermont-Ferrand II, Aubière Cedex, France)

Chapter 20. SiC Schottky Diodes, pp. 509-563
(Michal Lodzinski, Owen J. Guy, Michael R. Jennings and Amador Perez-Tomas, School of Engineering, Swansea University, Singleton Park, Swansea, UK, and others)

Chapter 21. GaN-based Schottky Diodes, pp. 565-593
(Jin-Ping Ao and Yasuo Ohno, Institute of Technology and Sciences, The University of Tokushima)

Chapter 22. Multi-Layer Polymer Light-Emitting Diodes, pp. 595-620
(Hsin-Fei Meng, Shin-Rong Tseng, Institute of Physics, National Chiao Tung Univ., Taiwan, Republic of China)


   Binding: Hardcover
   Pub. Date: 2009
   Pages: 7 x 10, 633pp.
   ISBN: 978-1-60692-462-4
   Status: AV
Status Code Description
AN Announcing
FM Formatting
PP Page Proofs
FP Final Production
EP Editorial Production
PR At Prepress
AP At Press
AV Available
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Handbook of Light Emitting and Schottky Diode Research