Wide Band Gap Semiconductor Nanowires For Optical Devices

Author: Vincent Consonni
Publisher: John Wiley & Sons
ISBN: 1118984285
Size: 16.53 MB
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Wide Band Gap Semiconductor Nanowires For Optical Devices from the Author: Vincent Consonni. This book, the second of two volumes, describes heterostructures and optoelectronic devices made from GaN and ZnO nanowires. Over the last decade, the number of publications on GaN and ZnO nanowires has grown exponentially, in particular for their potential optical applications in LEDs, lasers, UV detectors or solar cells. So far, such applications are still in their infancy, which we analyze as being mostly due to a lack of understanding and control of the growth of nanowires and related heterostructures. Furthermore, dealing with two different but related semiconductors such as ZnO and GaN, but also with different chemical and physical synthesis methods, will bring valuable comparisons in order to gain a general approach for the growth of wide band gap nanowires applied to optical devices

Wide Band Gap Semiconductor Nanowires For Optical Devices

Author: Vincent Consonni
Publisher: John Wiley & Sons
ISBN: 9781848215979
Size: 45.66 MB
Format: PDF, ePub, Mobi
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Wide Band Gap Semiconductor Nanowires For Optical Devices from the Author: Vincent Consonni. GaN and ZnO nanowires can by grown using a wide variety of methods from physical vapor deposition to wet chemistry for optical devices. This book starts by presenting the similarities and differences between GaN and ZnO materials, as well as the assets and current limitations of nanowires for their use in optical devices, including feasibility and perspectives. It then focuses on the nucleation and growth mechanisms of ZnO and GaN nanowires, grown by various chemical and physical methods. Finally, it describes the formation of nanowire heterostructures applied to optical devices.

Wide Band Gap Semiconductor Nanowires For Optical Devices

Author: Vincent Consonni
Publisher: John Wiley & Sons
ISBN: 1118984307
Size: 22.74 MB
Format: PDF
View: 4627
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Wide Band Gap Semiconductor Nanowires For Optical Devices from the Author: Vincent Consonni. GaN and ZnO nanowires can by grown using a wide variety of methods from physical vapor deposition to wet chemistry for optical devices. This book starts by presenting the similarities and differences between GaN and ZnO materials, as well as the assets and current limitations of nanowires for their use in optical devices, including feasibility and perspectives. It then focuses on the nucleation and growth mechanisms of ZnO and GaN nanowires, grown by various chemical and physical methods. Finally, it describes the formation of nanowire heterostructures applied to optical devices.

Nanowires And Nanobelts

Author: Zhong Lin Wang
Publisher: Springer Science & Business Media
ISBN: 0387287450
Size: 78.74 MB
Format: PDF
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Nanowires And Nanobelts from the Author: Zhong Lin Wang.

Semiconductor Nanowires I Growth And Theory

Author:
Publisher: Academic Press
ISBN: 0128030445
Size: 40.89 MB
Format: PDF, ePub, Docs
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Semiconductor Nanowires I Growth And Theory from the Author: . Semiconductor Nanowires: Part A, Number 93 in the Semiconductor and Semimetals series, focuses on semiconductor nanowires. Contains comments from leading contributors in the field semiconductor nanowires Provides reviews of the most important recent literature Presents a broad view, including an examination of semiconductor nanowires Comprises up to date advancements in the technological development of nanowire devices and systems, and is comprehensive enough to be used as a reference book on nanowires as well as a graduate student text book.

Wide Bandgap Semiconductor Materials And Devices 11 And State Of The Art Program On Compound Semiconductors 52 Sotapocs 52

Author: J. Kim
Publisher: The Electrochemical Society
ISBN: 1566777941
Size: 64.43 MB
Format: PDF
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Wide Bandgap Semiconductor Materials And Devices 11 And State Of The Art Program On Compound Semiconductors 52 Sotapocs 52 from the Author: J. Kim. This issue of ECS Transactions focuses on issues pertinent to development of wide-bandgap semiconductor materials and device applications: inorganic wide-bandgap semiconductor materials, including III-nitrides, II-oxides, SiC, diamond, II-VI, and emerging materials.

Wide Bandgap Semiconductor Materials And Devices 12

Author: J. A. Bardwell
Publisher: The Electrochemical Society
ISBN: 1566778670
Size: 47.62 MB
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Wide Bandgap Semiconductor Materials And Devices 12 from the Author: J. A. Bardwell. 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.

Wide Bandgap Light Emitting Materials And Devices

Author: Gertrude F. Neumark
Publisher: John Wiley & Sons
ISBN: 3527617086
Size: 75.80 MB
Format: PDF, ePub
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Wide Bandgap Light Emitting Materials And Devices from the Author: Gertrude F. Neumark. 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.

Modeling Characterization And Production Of Nanomaterials

Author: V Tewary
Publisher: Elsevier
ISBN: 1782422358
Size: 23.54 MB
Format: PDF
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Modeling Characterization And Production Of Nanomaterials from the Author: V Tewary. Nano-scale materials have unique electronic, optical, and chemical properties which make them attractive for a new generation of devices. Part one of Modeling, Characterization, and Production of Nanomaterials: Electronics, Photonics and Energy Applications covers modeling techniques incorporating quantum mechanical effects to simulate nanomaterials and devices, such as multiscale modeling and density functional theory. Part two describes the characterization of nanomaterials using diffraction techniques and Raman spectroscopy. Part three looks at the structure and properties of nanomaterials, including their optical properties and atomic behaviour. Part four explores nanofabrication and nanodevices, including the growth of graphene, GaN-based nanorod heterostructures and colloidal quantum dots for applications in nanophotonics and metallic nanoparticles for catalysis applications. Comprehensive coverage of the close connection between modeling and experimental methods for studying a wide range of nanomaterials and nanostructures Focus on practical applications and industry needs, supported by a solid outlining of theoretical background Draws on the expertise of leading researchers in the field of nanomaterials from around the world

Renewable Energies For Central Asia Countries Economic Environmental And Social Impacts

Author: Aldo Iacomelli
Publisher: Springer Science & Business Media
ISBN: 1402039263
Size: 60.49 MB
Format: PDF, ePub
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Renewable Energies For Central Asia Countries Economic Environmental And Social Impacts from the Author: Aldo Iacomelli. New technologies will play a crucial role in the development of a market of "sustainable energy products" that should grow in a competitive way to stand against the challenge of change. This book suggests learn from Central Asian countries the potentiality of renewable in such areas as an option. The book investigates policy option for new markets for renewable technology, and it tests the economic path for the Kyoto protocol implementation.