Substrate Engineering: Volume 587

Substrate Engineering: Volume 587 PDF Author: David Norton
Publisher: Cambridge University Press
ISBN: 9781107413375
Category : Technology & Engineering
Languages : en
Pages : 228

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Book Description
Epitaxial growth has always been a marriage of convenience between film and substrate. More and more frequently, however, it is impractical to use the same material for both film and substrate because it is not available as large single crystals, it is prohibitively expensive, or its properties are ill-suited for the intended application. To meet these challenges, many strategies have been pursued to achieve highly oriented or single-crystal thin films via epitaxy. Crystalline films have been mechanically bonded to other materials to form composite substrates. Crystals have been cut and rewelded, patterned and regrown, buffer layered and repolished. Each strategy has met with fundamental challenges including lattice mismatch, chemical incompatibility, differences in thermal expansion, and structural dissimilarity. This book, first published in 2000, focuses on developments in novel substrate engineering which enable improved epitaxy. Topics include: biaxially textured substrates for high-Tc-coated conductors; surfaces for oxide epitaxy; wafer bonding and lift off; lattice mismatch engineering; substrate engineering and solid-phase recrystallization and epitaxy.

Substrate Engineering: Volume 587

Substrate Engineering: Volume 587 PDF Author: David Norton
Publisher: Cambridge University Press
ISBN: 9781107413375
Category : Technology & Engineering
Languages : en
Pages : 228

Get Book Here

Book Description
Epitaxial growth has always been a marriage of convenience between film and substrate. More and more frequently, however, it is impractical to use the same material for both film and substrate because it is not available as large single crystals, it is prohibitively expensive, or its properties are ill-suited for the intended application. To meet these challenges, many strategies have been pursued to achieve highly oriented or single-crystal thin films via epitaxy. Crystalline films have been mechanically bonded to other materials to form composite substrates. Crystals have been cut and rewelded, patterned and regrown, buffer layered and repolished. Each strategy has met with fundamental challenges including lattice mismatch, chemical incompatibility, differences in thermal expansion, and structural dissimilarity. This book, first published in 2000, focuses on developments in novel substrate engineering which enable improved epitaxy. Topics include: biaxially textured substrates for high-Tc-coated conductors; surfaces for oxide epitaxy; wafer bonding and lift off; lattice mismatch engineering; substrate engineering and solid-phase recrystallization and epitaxy.

Substrate Engineering--paving the Way to Epitaxy

Substrate Engineering--paving the Way to Epitaxy PDF Author: David Norton
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 244

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Book Description
Epitaxial growth has always been a marriage of convenience between film and substrate. More and more frequently, however, it is impractical to use the same material for both film and substrate because it is not available as large single crystals, it is prohibitively expensive, or its properties are ill-suited for the intended application. To meet these challenges, many strategies have been pursued to achieve highly oriented or single-crystal thin films via epitaxy. Crystalline films have been mechanically bonded to other materials to form composite substrates. Crystals have been cut and rewelded, patterned and regrown, buffer layered and repolished. Each strategy has met with fundamental challenges including lattice mismatch, chemical incompatibility, differences in thermal expansion, and structural dissimilarity. This book, first published in 2000, focuses on developments in novel substrate engineering which enable improved epitaxy. Topics include: biaxially textured substrates for high-Tc-coated conductors; surfaces for oxide epitaxy; wafer bonding and lift off; lattice mismatch engineering; substrate engineering and solid-phase recrystallization and epitaxy.

Epitaxy

Epitaxy PDF Author: Miao Zhong
Publisher: BoD – Books on Demand
ISBN: 9535138898
Category : Technology & Engineering
Languages : en
Pages : 246

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Book Description
The edited volume "Epitaxy" is a collection of reviewed and relevant research chapters, offering a comprehensive overview of recent developments in the field of materials science. The book comprises single chapters authored by various researchers and edited by an expert active in this research area. All chapters are complete in themselves but are united under a common research study topic. This publication aims at providing a thorough overview of the latest research efforts by international authors in the field of materials science as well as opening new possible research paths for further developments.

Materials, Technology, and Reliability for Advanced Interconnects and Low-k Dielectrics

Materials, Technology, and Reliability for Advanced Interconnects and Low-k Dielectrics PDF Author:
Publisher:
ISBN:
Category : Dielectric films
Languages : en
Pages : 624

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Book Description


Electron-Emissive Materials, Vacuum Microelectronics and Flat-Panel Displays: Volume 621

Electron-Emissive Materials, Vacuum Microelectronics and Flat-Panel Displays: Volume 621 PDF Author: Kevin L. Jensen
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 584

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Book Description
The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.

Thin Films

Thin Films PDF Author:
Publisher:
ISBN:
Category : Thin films
Languages : en
Pages : 576

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Book Description


Nanophase and Nanocomposite Materials

Nanophase and Nanocomposite Materials PDF Author:
Publisher:
ISBN:
Category : Composite materials
Languages : en
Pages : 738

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Book Description


Nucleation and Growth Processes in Materials

Nucleation and Growth Processes in Materials PDF Author: Antonios Gonis
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 474

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Book Description
One of the goals of materials science is to design alloys with pre-specified desirable technological properties. To achieve this goal, it is necessary to have a thorough understanding of the fundamental mechanisms underlying materials behavior. In particular, one must understand the effects on alloy properties caused by intentional changes in concentration and how the combinations of temperature, time and uncontrollable foreign impurities affect microstructure. In addition to the equilibrium phase information contained in phase diagrams, nonequilibrium dynamic processes and metastable phases are known to be crucial in determining materials properties. This volume brings together researchers working on various aspects of nonequilibrium processes in materials to discuss current research issues and to provide guidelines for future work. Particular attention was paid to understanding particle nucleation and growth, both experimentally and theoretically, solid-state reactions, nanosystems, liquid-solid transformations, and solidification and amorphization. On the theoretical side, fundamental principles governing nucleation and growth, and related phenomena such as coarsening and Ostwald ripening, are discussed. Progress is also reported on the phase field method and on Monte Carlo simulations.

Ferroelectric Thin Films

Ferroelectric Thin Films PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 608

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Book Description


Scientific Basis for Nuclear Waste Management XXIII: Volume 608

Scientific Basis for Nuclear Waste Management XXIII: Volume 608 PDF Author: Robert W. Smith
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 800

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Book Description
This long-standing symposia series has become the premier, international forum for scientific and engineering issues related to all levels and types of radioactive wastes and their management. Topics include: fuel cladding and spent nuclear fuel; container fabrication and corrosion; performance assessment; repository performance; radionuclide sorption and transport; cement-based materials and waste containment; corrosion of ceramic wasteforms; structure and characterization of ceramics; radiation effects; natural analogs; wasteform characterization and processing; and corrosion and characterization of glass wasteforms.