Chemical Vapor Deposition 1960 1980 a Bibliography

Chemical Vapor Deposition 1960 1980 a Bibliography PDF Author: D.T. Hawkins (ed)
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Chemical Vapor Deposition 1960 1980 a Bibliography

Chemical Vapor Deposition 1960 1980 a Bibliography PDF Author: D.T. Hawkins (ed)
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Chemical Vapor Deposition: 1960-1980

Chemical Vapor Deposition: 1960-1980 PDF Author: Donald T. Hawkins
Publisher: Springer
ISBN:
Category : Reference
Languages : en
Pages : 762

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Thin Films by Chemical Vapour Deposition

Thin Films by Chemical Vapour Deposition PDF Author: C.E. Morosanu
Publisher: Elsevier
ISBN: 1483291731
Category : Technology & Engineering
Languages : en
Pages : 720

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Book Description
The explosive growth in the semiconductor industry has caused a rapid evolution of thin film materials that lend themselves to the fabrication of state-of-the-art semiconductor devices. Early in the 1960s an old research technique named chemical vapour phase deposition (CVD), which has several unique advantages, developed into the most widely used technique for thin film preparation in electronics technology. In the last 25 years, tremendous advances have been made in the science and technology of thin films prepared by means of CVD. This book presents in a single volume, an up-to-date overview of the important field of CVD processes which has never been completely reviewed previously. Contents: Part I. 1. Evolution of CVD Films. Introductory remarks. Short history of CVD thin films. II. Fundamentals. 2. Techniques of Preparing Thin Films. Electrolytic deposition techniques. Vacuum deposition techniques. Plasma deposition techniques. Liquid-phase deposition techniques. Solid-phase deposition techniques. Chemical vapour conversion of substrate. Chemical vapour deposition. Comparison between CVD and other thin film deposition techniques. 3. Chemical Processes Used in CVD. Introduction. Description of chemical reactions used in CVD. 4. Thermodynamics of CVD. Feasibility of a CVD process. Techniques for equilibrium calculations in CVD systems. Examples of thermodynamic studies of CVD systems. 5. Kinetics of CVD. Steps and control type of a CVD heterogeneous reaction. Influence of experimental parameters on thin film deposition rate. Continuous measurement of the deposition rate. Experimental methods for studying CVD kinetics. Role of homogeneous reactions in CVD. Mechanism of CVD processes. Kinetics and mechanism of dopant incorporation. Transport phenomena in CVD. Status of kinetic and mechanism investigations in CVD systems. 6. Measurement of Thin Film Thickness. Mechanical methods. Mechanical-optical methods. Optical methods. Electrical methods. Miscellaneous methods. 7. Nucleation and Growth of CVD Films. Stages in the nucleation and growth mechanism. Regimes of nucleation and growth. Nucleation theory. Dependence of nucleation on deposition parameters. Heterogeneous nucleation and CVD film structural forms. Homogeneous nucleation. Experimental techniques. Experimental results of CVD film nucleation. 8. Thin Film Structure. Techniques for studying thin film structure. Structural defects in CVD thin films. 9. Analysis of CVD Films. Analysis techniques of thin film bulk. Analysis techniques of thin film surfaces. Film composition measurement. Depth concentration profiling. 10. Properties of CVD Films. Mechanical properties. Thermal properties. Optical properties. Photoelectric properties. Electrical properties. Magnetic properties. Chemical properties. Part III. 11. Equipment and Substrates. Equipment for CVD. Safety in CVD. Substrates. 12. Preparation and Properties of Semiconducting Thin Films. Homoepitaxial semiconducting films. Heteroepitaxial semiconducting films. 13. Preparation and Properties of Amorphous Insulating Thin Films. Oxides. Nitrides and Oxynitrides. Polymeric thin films. 14. Preparation and Properties of Conductive Thin Films. Metals and metal alloys. Resistor materials. Transparent conducting films. Miscellaneous materials. 15. Preparation and Properties of Superconducting and Magnetic Thin Films. Superconducting materials. Magnetic materials. 16. Uses of CVD Thin Films. Applications in electronics and microelectronics. Applications in the field of microwaves and optoelectronics. Miscellaneous applications. Artificial heterostructures (Quantum wells, superlattices, monolayers, two-dimensional electron gases). Part V. 17. Present and Future Importance of CVD Films.

Chemical Vapor Deposition

Chemical Vapor Deposition PDF Author: Jong-Hee Park
Publisher: ASM International
ISBN: 161503224X
Category : Technology & Engineering
Languages : en
Pages : 477

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Chemical Vapor Deposition, Volume 1, 1964-1974

Chemical Vapor Deposition, Volume 1, 1964-1974 PDF Author: National Technical Information Service
Publisher:
ISBN:
Category : Chemical vapor deposition
Languages : en
Pages :

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Proceedings of the Ninth International Conference on Chemical Vapor Deposition, 1984

Proceedings of the Ninth International Conference on Chemical Vapor Deposition, 1984 PDF Author: McD. Robinson
Publisher:
ISBN:
Category : Vapor-plating
Languages : en
Pages : 828

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Dry Etching for Microelectronics

Dry Etching for Microelectronics PDF Author: R.A. Powell
Publisher: Elsevier
ISBN: 0080983588
Category : Technology & Engineering
Languages : en
Pages : 312

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Book Description
This volume collects together for the first time a series of in-depth, critical reviews of important topics in dry etching, such as dry processing of III-V compound semiconductors, dry etching of refractory metal silicides and dry etching aluminium and aluminium alloys. This topical format provides the reader with more specialised information and references than found in a general review article. In addition, it presents a broad perspective which would otherwise have to be gained by reading a large number of individual research papers. An additional important and unique feature of this book is the inclusion of an extensive literature review of dry processing, compiled by search of computerized data bases. A subject index allows ready access to the key points raised in each of the chapters.

The Foundations of Vacuum Coating Technology

The Foundations of Vacuum Coating Technology PDF Author: Donald M. Mattox
Publisher: William Andrew
ISBN: 0128130857
Category : Technology & Engineering
Languages : en
Pages : 383

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Book Description
The Foundations of Vacuum Coating Technology, Second Edition, is a revised and expanded version of the first edition, which was published in 2003. The book reviews the histories of the various vacuum coating technologies and expands on the history of the enabling technologies of vacuum technology, plasma technology, power supplies, and low-pressure plasma-enhanced chemical vapor deposition. The melding of these technologies has resulted in new processes and products that have greatly expanded the application of vacuum coatings for use in our everyday lives. The book is unique in that it makes extensive reference to the patent literature (mostly US) and how it relates to the history of vacuum coating. The book includes a Historical Timeline of Vacuum Coating Technology and a Historical Timeline of Vacuum/Plasma Technology, as well as a Glossary of Terms used in the vacuum coating and surface engineering industries. History and detailed descriptions of Vacuum Deposition Technologies Review of Enabling Technologies and their importance to current applications Extensively referenced text Patents are referenced as part of the history Historical Timelines for Vacuum Coating Technology and Vacuum/Plasma Technology Glossary of Terms for vacuum coating

Bibliography on the High Temperature Chemistry and Physics of Materials

Bibliography on the High Temperature Chemistry and Physics of Materials PDF Author:
Publisher:
ISBN:
Category : Condensed matter
Languages : en
Pages :

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Chemistry of the Semiconductor Industry

Chemistry of the Semiconductor Industry PDF Author: S.J. Moss
Publisher: Springer Science & Business Media
ISBN: 9780216920057
Category : Technology & Engineering
Languages : en
Pages : 456

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Book Description
This book covers the chemistry of the major processes involved in the manufacture of integrated circuits. The authors describe all the major processes in use, together with some interesting processes which are currently being developed and hold future promise. Each chapter covers the current state of knowledge of the underlying chemistry of a particular process, and identifies areas of uncertainty requiring further research.