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Organometallic vapor-phase epitaxy
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ISBN: 0126738424 9786611057114 1281057118 0080538185 9780126738421 9780080538181 9781281057112 6611057110 Year: 1999 Publisher: San Diego Academic Press

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Abstract

This book describes the operation of a particular technique for the production of compound semiconductor materials. It describes how the technique works, how it can be used for the growth of particular materials and structures, and the application of these materials for specific devices. It contains not only a fundamental description of the operation of the technique but also contains lists of data useful for the everyday operation of OMVPE reactors. It also offers specific recipes that can be used to produce a wide range of specific materials, structures, and devices.Key Features*

Precursor Chemistry of Advanced Materials
Authors: ---
ISSN: 14366002 ISBN: 9783540016052 9783540314516 3540016058 3540314512 Year: 2005 Volume: 9 Publisher: Berlin Heidelberg Springer-Verlag GmbH.

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Abstract

Material synthesis by the transformation of organometallic compounds (precursors) by vapor deposition techniques such as chemical vapor deposition (CVD) and atomic layer deposition (ALD) has been in the forefront of modern day research and development of new materials. There exists a need for new routes for designing and synthesizing new precursors as well as the application of established molecular precursors to derive tuneable materials for technological demands. With regard to the precursor chemistry, a most detailed understanding of the mechanistic complexity of materials formation from molecular precursors is very important for further development of new processes and advanced materials. To emphasize and stimulate research in these areas, this volume comprises a selection of case studies covering various key-aspects of the interplay of precursor chemistry with the process conditions of materials formation, particularly looking at the similarities and differences of CVD, ALD and nanoparticle synthesis, e.g. colloid chemistry, involving tailored molecular precursors.

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