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Ultra-wide Bandgap Semiconductor Materials

Ultra-wide Bandgap Semiconductors (UWBG) covers the most recent progress in UWBG materials, including sections on high-Al-content;

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Wide Bandgap Semiconductors for Power Electronics - Materials, Devices, Applications

Wide Bandgap Semiconductors for Power Electronic A guide to the field of wide bandgap semiconductor technology Wide Bandgap;

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Wide Bandgap Semiconductor Power Devices

Wide Bandgap Semiconductor Power Devices: Materials, Physics, Design and Applications provides readers with a single resource on why;

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Nitride Wide Bandgap Semiconductor Material and Electronic Devices

This book systematically introduces physical characteristics and implementations of III-nitride wide bandgap semiconductor materials and;

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Nitride Wide Bandgap Semiconductor Material and Electronic Devices

This book systematically introduces physical characteristics and implementations of III-nitride wide bandgap semiconductor materials and;

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Wide Bandgap Power Semiconductor Packaging

Wide Bandgap Power Semiconductor Packaging: Materials, Components, and Reliability addresses the key challenges that WBG power;

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Silicon Carbide 2008 Materials, Processing and Devices

manufactured on this wide-bandgap semiconductor including: innovative device designs; characterization of device and materials properties; and;

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Optically Induced Space-Charge Gratings in Wide-Bandgap Semiconductors

of photorefractive applications has been limited by the rate in which breakthroughs in materials science have supplied better wide-bandgap semiconductor;

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Wide Bandgap Semiconductor Electronics And Devices

bandgap semiconductors have had a strong presence in the research and development arena for many years. Recently, the increasing demand for high;

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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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Ultrawide Bandgap Semiconductors

Ultrawide Bandgap Semiconductors, Volume 107 in the Semiconductors and Semimetals series, highlights the latest breakthrough;

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Handbook of Luminescent Semiconductor Materials

photoluminescence principles, the book focuses on the optical properties of wide-bandgap semiconductors, such as AlN, GaN, and ZnO. It then presents;

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Handbook of Luminescent Semiconductor Materials

photoluminescence principles, the book focuses on the optical properties of wide-bandgap semiconductors, such as AlN, GaN, and ZnO. It then presents;

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Gan-based Materials And Devices

also be used as a supplementary text for graduate courses on wide bandgap semiconductor technology.;

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II-VI Semiconductor Materials and their Applications

II-VI Semiconductor Materials and Their Applications deals with II-VI compound semiconductors and the status of the two areas of current;

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Photoelectrochemical Water Splitting

Chalcogenide Electrodes, Narrow Bandgap Semiconductor Electrodes, Ti-based Electrode Materials, BiVO4 Photoanodes, Noble Electrode Materials, Cell;

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Science and Technology of Chemical Mechanical Planarization (Cmp)

-bandgap semiconductors. The situation is changing, with single-crystal electronic-grade diamond becoming a commercially available material. As;

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ISE Electronic Principles

Electronic Principles continues its tradition as a clearly explained, in-depth introduction to theelectronic principles of semiconductor;

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Advanced Nanoelectronics

materials such as nanowires and nanotubes. Additionally, nanoelectromechanical switches-based mechanical relays and wide bandgap semiconductor-based;

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Next Generation Multilayer Graded Bandgap Solar Cells

cells. The authors describe the use of new device design, based on multilayer graded bandgap configuration, using CdTe-based solar cells. The;

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Optoelectronic Devices: III Nitrides

Tremendous progress has been made in the last few years in the growth, doping and processing technologies of the wide bandgap;

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Zinc Oxide

well as its growth, optical processes, doping and ZnO-based dilute magnetic semiconductors. Concluding sections treat bandgap engineering;

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Single Crystals of Electronic Materials

-V, II-VI and IV-VI semiconductors, but also includes chapters on novel semiconductors, such as wide bandgap oxides like ZnO, Ga2, O3, In2;

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Liquid Phase Epitaxy of Electronic, Optical and Optoelectronic Materials

Liquid-Phase Epitaxy (LPE) is a technique used in the bulk growth of crystals, typically in semiconductor manufacturing, whereby the;

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Gallium Oxide

Gallium Oxide: Technology, Devices and Applications discusses the wide bandgap semiconductor and its promising applications in power;

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