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Epitaxial Growth Mechanisms in Vacuum Deposited Thin Films

Epitaxial Growth Mechanisms in Vacuum Deposited Thin Films
Author: R. J. Gerdes
Publisher:
Total Pages: 14
Release: 1969
Genre: Crystal growth
ISBN:

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The mechanisms which lead to oriented overgrowth have been investigated with a view towards experimental and theoretical development of suitable models for nucleation and growth phenomena. Particular emphasis was placed on the role of common epitaxial features occurring independently of experimental conditions. Such features included the parallel alignment of close-packed rows of deposit atoms with 110 directions in the substrate, long-range epitaxial effects and crystallite size distributions characteristic of the various growth stages. (Author).


Epitaxial Growth Part A

Epitaxial Growth Part A
Author: J Matthews
Publisher: Elsevier
Total Pages: 401
Release: 2012-12-02
Genre: Science
ISBN: 0323152120

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Epitaxial Growth, Part A is a compilation of review articles that describe various aspects of the growth of single-crystal films on single-crystal substrates. The collection contains topics on the historical development of epitaxy, the nucleation of thin films, the structure of the interface between film and substrate, and the generation of defects during film growth. The text also provides descriptions of the methods used to prepare and examine thin films and a list of the overgrowth-substrate combinations studied. Mineralogists, materials engineers and scientists, and physicists will find this book a great source of insight.


Thin Films by Chemical Vapour Deposition

Thin Films by Chemical Vapour Deposition
Author: C.E. Morosanu
Publisher: Elsevier
Total Pages: 720
Release: 2016-06-22
Genre: Technology & Engineering
ISBN: 1483291731

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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.


Epitaxial Growth

Epitaxial Growth
Author: John Wauchope Matthews
Publisher:
Total Pages: 404
Release: 1975
Genre: Science
ISBN:

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Epitaxial Growth Part A ...


Mechanisms and Principles of Epitaxial Growth in Metallic Systems:

Mechanisms and Principles of Epitaxial Growth in Metallic Systems:
Author: Luc T. Wille
Publisher: Cambridge University Press
Total Pages: 294
Release: 2014-06-05
Genre: Technology & Engineering
ISBN: 9781107413696

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Epitaxial growth is a crucial process in much of materials science. Technological applications abound, ranging from 'classical' examples such as magnetic recording devices, superconducting thin films and quantum dots, to more 'esoteric' applications in biological systems and nanotechnology. This book provides an overview of accomplishments to date, as well as the challenges that lie ahead. Several chapters indicate that a wide range of experimental techniques yields a wealth of information needed to develop reliable computational models. Measured data includes static features (island distribution, morphology, etc.) as well as dynamics (diffusion of atoms and islands). Contributions address efforts to co-ordinate these experimental observations with computational approaches. Also touched upon are the technological applications of epitaxially grown systems and illustrate the need for a better fundamental understanding of the phenomena. Topics include: alloying and effects of impurities; island distribution; strain and dislocation growth; sputter- and ion-assisted deposition and surface diffusion


Principles of Vapor Deposition of Thin Films

Principles of Vapor Deposition of Thin Films
Author: Professor K.S. K.S Sree Harsha
Publisher: Elsevier
Total Pages: 1173
Release: 2005-12-16
Genre: Technology & Engineering
ISBN: 0080480314

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The goal of producing devices that are smaller, faster, more functional, reproducible, reliable and economical has given thin film processing a unique role in technology. Principles of Vapor Deposition of Thin Films brings in to one place a diverse amount of scientific background that is considered essential to become knowledgeable in thin film depostition techniques. Its ultimate goal as a reference is to provide the foundation upon which thin film science and technological innovation are possible. * Offers detailed derivation of important formulae. * Thoroughly covers the basic principles of materials science that are important to any thin film preparation. * Careful attention to terminologies, concepts and definitions, as well as abundance of illustrations offer clear support for the text.