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Nitrides and Related Wide Band Gap Materials

The Symposium on 'Nitrides and related wide band gap materials' at the 1998 Spring Meeting of the European Materials Research Society (E;

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Sic Materials And Devices - Volume 1

After many years of research and development, silicon carbide has emerged as one of the most important wide band gap semiconductors. The;

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Optoelectronic Devices: III Nitrides

nitrides and covers the entire process from growth to devices and applications making it essential reading for those working in the semiconductors;

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Ultra-wide Bandgap Semiconductor Materials

AlGaN, diamond, B-Ga2O3, and boron nitrides. The coverage of these materials is comprehensive, addressing materials growth, physics properties;

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Porous Silicon Carbide and Gallium Nitride

and applications of porous semiconductor materials having a wide band gap. This comprehensive reference begins with an overview of porous wide;

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Single Crystals of Electronic Materials

, O3, Al2, O3, nitrides (AIN and GaN), and diamond. Each chapter focuses on a specific material, providing a comprehensive overview that;

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Gan-based Materials And Devices

experts on different aspects of nitride technology, addresses the entire spectrum of issues related to nitride materials and devices, and it will;

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Handbook of Zinc Oxide and Related Materials

Through their application in energy-efficient and environmentally friendly devices, zinc oxide (ZnO) and related classes of wide gap;

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Wide Band Gap Semiconductor Nanowires Fo

to a lack of understanding and control of the growth of nanowires and related heterostructures. Furthermore, dealing with two different but;

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Handbook of Zinc Oxide and Related Materials

Through their application in energy-efficient and environmentally friendly devices, zinc oxide (ZnO) and related classes of wide gap;

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Advanced and Refractory Ceramics for Energy Conservation and Efficiency

* Advanced Nitrides and Related Materials for Energy Applications;

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Next Generation of Photovoltaics

how to take advantage of below band-gap energy photons) and related technologies (for quantum dots, nitrides, thin films), advanced light;

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Gallium Nitride

blue and ultraviolet region, due to its wide and direct band gap. Nano-materials often present novel properties that are different from the;

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Advances in Nanomaterials and Nanostructures

Energy, Healthcare, and Industry; and Nanolaminated Ternary Carbides and Nitrides (MAX Phases) symposia held during the 2010 Materials Science;

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Physics and Applications of Dilute Nitrides

examines these applications and presents a broad and in-depth look at the basic electronic and optical properties of diluted nitrides. The aim;

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Silicon Carbide: Materials, Processing and Devices

potential of wide band gap SiC for optoelectronic and microelectronic applications.;

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Thermoelectric Thin Films

involves widespread contributions on several categories of thermoelectric thin films: oxides, chalcogenides, iodates, nitrides and polymers. This;

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Electronic Structure of Refractory Carbides and Nitrides

results on the electronic band structure of ideal binary transition metal carbides and nitrides are presented, and the influence of crystal;

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Electronic Structure of Refractory Carbides and Nitrides

results on the electronic band structure of ideal binary transition metal carbides and nitrides are presented, and the influence of crystal;

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Oxide and Nitride Semiconductors

Semiconducting oxides and nitrides are becoming the most important s- jects in materials science. In particular, zinc oxide (ZnO), gallium;

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III-V Nitrides Semiconductors and Ceramics: From Material Growth to Device Applications

nitrides exhibit excellent longevity and brightness levels. Combined with red LEDs one can, for the first time, have full colour semiconductor;

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Advances in Materials Science Research

properties of 1D photonic band gap material structure and random multilayer structure; and altering spectrum tuning capability, and temperature;

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Materials for High-Temperature Semiconductor Devices

. This book surveys the state-of-the-art for the three major wide bandgap materials (silicon carbide, nitrides, and diamond), assesses the;

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Ceramic Materials Research Trends

ceramics include clay products, silicate glass and cement; while advanced ceramics consist of carbides (SiC), pure oxides (Al2O3), nitrides (Si3N4;

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Developments in Ceramic Materials Research

ceramics include clay products, silicate glass and cement; while advanced ceramics consist of carbides (SiC), pure oxides (Al2O3), nitrides (Si3N4;

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Metalorganic Vapor Phase Epitaxy (MOVPE)

information on arsenides, phosphides, and antimonides; nitrides; lattice-mismatched growth; CdTe, MCT (mercury cadmium telluride); ZnO and related;

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Wide Band Gap Semiconductor Nanowires 1

GaN and ZnO nanowires can by grown using a wide variety of methods from physical vapor deposition to wet chemistry for optical devices;

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