Crystal Growth Technology

Crystal Growth Technology PDF Author: K. Byrappa
Publisher: Springer Science & Business Media
ISBN: 9783540003670
Category : Science
Languages : en
Pages : 618

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Book Description
Crystals are the unacknowledged pillars of modern technology. The modern technological developments depend greatly on the availability of suitable single crystals, whether it is for lasers, semiconductors, magnetic devices, optical devices, superconductors, telecommunication, etc. In spite of great technological advancements in the recent years, we are still in the early stage with respect to the growth of several important crystals such as diamond, silicon carbide, PZT, gallium nitride, and so on. Unless the science of growing these crystals is understood precisely, it is impossible to grow them as large single crystals to be applied in modern industry. This book deals with almost all the modern crystal growth techniques that have been adopted, including appropriate case studies. Since there has been no other book published to cover the subject after the Handbook of Crystal Growth, Eds. DTJ Hurle, published during 1993-1995, this book will fill the existing gap for its readers. The book begins with "Growth Histories of Mineral Crystals" by the most senior expert in this field, Professor Ichiro Sunagawa. The next chapter reviews recent developments in the theory of crystal growth, which is equally important before moving on to actual techniques. After the first two fundamental chapters, the book covers other topics like the recent progress in quartz growth, diamond growth, silicon carbide single crystals, PZT crystals, nonlinear optical crystals, solid state laser crystals, gemstones, high melting oxides like lithium niobates, hydroxyapatite, GaAs by molecular beam epitaxy, superconducting crystals, morphology control, and more. For the first time, the crystal growth modeling has been discussed in detail with reference to PZT and SiC crystals.

Crystal Growth Technology

Crystal Growth Technology PDF Author: K. Byrappa
Publisher: Springer Science & Business Media
ISBN: 9783540003670
Category : Science
Languages : en
Pages : 618

Get Book Here

Book Description
Crystals are the unacknowledged pillars of modern technology. The modern technological developments depend greatly on the availability of suitable single crystals, whether it is for lasers, semiconductors, magnetic devices, optical devices, superconductors, telecommunication, etc. In spite of great technological advancements in the recent years, we are still in the early stage with respect to the growth of several important crystals such as diamond, silicon carbide, PZT, gallium nitride, and so on. Unless the science of growing these crystals is understood precisely, it is impossible to grow them as large single crystals to be applied in modern industry. This book deals with almost all the modern crystal growth techniques that have been adopted, including appropriate case studies. Since there has been no other book published to cover the subject after the Handbook of Crystal Growth, Eds. DTJ Hurle, published during 1993-1995, this book will fill the existing gap for its readers. The book begins with "Growth Histories of Mineral Crystals" by the most senior expert in this field, Professor Ichiro Sunagawa. The next chapter reviews recent developments in the theory of crystal growth, which is equally important before moving on to actual techniques. After the first two fundamental chapters, the book covers other topics like the recent progress in quartz growth, diamond growth, silicon carbide single crystals, PZT crystals, nonlinear optical crystals, solid state laser crystals, gemstones, high melting oxides like lithium niobates, hydroxyapatite, GaAs by molecular beam epitaxy, superconducting crystals, morphology control, and more. For the first time, the crystal growth modeling has been discussed in detail with reference to PZT and SiC crystals.

SiC Power Materials

SiC Power Materials PDF Author: Zhe Chuan Feng
Publisher: Springer Science & Business Media
ISBN: 9783540206668
Category : Science
Languages : en
Pages : 480

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Book Description
In the 1950s Shockley predicted that SiC would quickly replace Si as a result of its superior material properties. In many ways he was right and today there is an active industry based on SiC, with new achievements being reported every year. This book reviews the progress achieved in SiC research and development, particularly over the past 10 years. It presents the essential properties of 3C-, 6H- and 4H-SiC polytypes including structural, electrical, optical, surface and interface properties; describes existing key SiC devices and also the challenges in materials growth and device fabrication of the 21st century. Overall it provides an up-to-date reference book suitable for a broad audience of newcomers, graduate students and engineers in industrial R&D.

Crystal Growth Bibliography

Crystal Growth Bibliography PDF Author:
Publisher: Springer Nature
ISBN: 1461596181
Category :
Languages : en
Pages : 270

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Book Description


Single Crystals of Electronic Materials

Single Crystals of Electronic Materials PDF Author: Roberto Fornari
Publisher: Woodhead Publishing
ISBN: 008102097X
Category : Technology & Engineering
Languages : en
Pages : 596

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Book Description
Single Crystals of Electronic Materials: Growth and Properties is a complete overview of the state-of-the-art growth of bulk semiconductors. It is not only a valuable update on the body of information on crystal growth of well-established electronic materials, such as silicon, III-V, II-VI and IV-VI semiconductors, but also includes chapters on novel semiconductors, such as wide bandgap oxides like ZnO, Ga2, O3, In2, O3, Al2, O3, nitrides (AIN and GaN), and diamond. Each chapter focuses on a specific material, providing a comprehensive overview that includes applications and requirements, thermodynamic properties, schematics of growth methods, and more. - Presents the latest research and most comprehensive overview of both standard and novel semiconductors - Provides a systematic examination of important electronic materials, including their applications, growth methods, properties, technologies and defect and doping issues - Takes a close look at emerging materials, including wide bandgap oxides, nitrides and diamond

Silicon Carbide and Related Materials 2015

Silicon Carbide and Related Materials 2015 PDF Author: Fabrizio Roccaforte
Publisher: Trans Tech Publications Ltd
ISBN: 3035730423
Category : Technology & Engineering
Languages : en
Pages : 1233

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Book Description
ICSCRM 2015 Selected, peer reviewed papers from the 16th International Conference on Silicon Carbide and Related Materials, October 4-9, 2015, Giardini Naxos, Italy

Silicon Carbide Ceramics

Silicon Carbide Ceramics PDF Author: Andrew J. Ruys
Publisher: Elsevier
ISBN: 0323886302
Category : Technology & Engineering
Languages : en
Pages : 588

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Book Description
It has been three decades since the last significant book was published on SiC ceramics (other than those books that specifically focus on SiC semiconductors). Thirty years has been a long time in the world of SiC ceramics. In the early 1990s, SiC was still a relatively obscure ceramic even within the materials community, prominent only as an industrial abrasive (carborundum), and a refractory (Chapter 7). This has all changed dramatically in the 21st century. For example, - As a semiconductor, SiC greatly surpasses silicon in performance, especially in high-power systems. Its market penetration since its launch in 2001 has been exponential. Single-crystal SiC semiconductors are covered in Chapter 3 - Millions of military and paramilitary personnel have globally been protected with lightweight SiC body armour, since the late 1990s. Body armour is covered in Chapters 4 and 5 - SiC–SiC is a composite material close to commercialization that makes possible high-temperature load-bearing applications hitherto only able to be hypothesized: from ultra-high-temperature jet turbine blades to advanced nuclear fuel encapsulation, the possibilities are very promising. Aerospace applications are covered in Chapter 9 - Other key areas that are addressed are blast-resistant SiC vehicle/vessel armour in Chapter 8 and wear-resistant SiC ceramics in Chapter 6 - Silicon Carbide Ceramics will be an essential reference resource for academic and industrial researchers and materials scientists and engineers working in ceramic materials for the semiconductor, defence, aerospace, wear resistance and refractory fields - Presents an extensive review of the history, production and properties of SiC ceramics, including their characterization and applications - Discusses classical and state-of-the-art sintering technologies for SiC ceramics - Focuses on the future of ceramic manufacturing and advanced ceramic additive technologies

SiC Technology

SiC Technology PDF Author: Maurizio Di Paolo Emilio
Publisher: Springer Nature
ISBN: 3031634187
Category :
Languages : en
Pages : 317

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Book Description


Computational Mechanics

Computational Mechanics PDF Author: Zhenhan Yao
Publisher: 清华大学出版社有限公司
ISBN: 9787302093428
Category : Engineering design
Languages : en
Pages : 608

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Book Description


Silicon Carbide and Related Materials - 1999

Silicon Carbide and Related Materials - 1999 PDF Author: Calvin H. Carter Jr.
Publisher: Trans Tech Publications Ltd
ISBN: 3035705518
Category : Technology & Engineering
Languages : en
Pages : 1696

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Book Description
Proceedings of the International Conference on Silicon Carbide and Related Materials, Research Triangle Park, North Carolina, USA, Oct. 10-15, 1999

Crystal Growth

Crystal Growth PDF Author: Vadim Glebovsky
Publisher: BoD – Books on Demand
ISBN: 1839626747
Category : Science
Languages : en
Pages : 126

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Book Description
In this book, a variety of topics related to crystal growth is extensively discussed. The topics encompass the physics of growing single crystals of different functional materials, single-crystalline thin films, and even the features of crystallization of biofats and oils. It is intended to provide information on advancements in technologies for crystal growth to physicists, researches, as well as engineers working with single-crystalline functional materials.