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Written by one of the founders of this field, this book provides a historical overview of the invention of superlattice, one of the most important devices of the second half of the 20th century. In addition to describing the fundamental concepts, this completely revised and updated edition provides new insights in the field of manmade solids. Written by one of the founders of this fieldDelivers over 20% new material, including new research and new technological applications Provides a basic understanding of the physics involved from first principles,
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Epitaxy --- Layer structure (Solids) --- Superlattices as materials --- Congresses --- Congresses --- Congresses
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Epitaxy --- Layer structure (Solids) --- Superlattices as materials --- Congresses --- Congresses --- Congresses
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Sputtering (Physics) --- Superlattices as materials --- Congresses. --- -Semiconductor superlattices --- Cathode sputtering --- Collisions (Nuclear physics) --- Surfaces (Technology) --- Congresses
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Long Wave Polar Modes in Semiconductor Heterostructures is concerned with the study of polar optical modes in semiconductor heterostructures from a phenomenological approach and aims to simplify the model of lattice dynamics calculations. The book provides useful tools for performing calculations relevant to anyone who might be interested in practical applications. The main focus of Long Wave Polar Modes in Semiconductor Heterostructures is planar heterostructures (quantum wells or barriers, superlattices, double barrier structures etc) but there is also discussion on the g
Semiconductors --- Heterostructures. --- Electron-phonon interactions. --- Optical properties. --- Interactions, Electron-phonon --- Electromagnetic interactions --- Crystals --- Superlattices as materials
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Materials. --- Heterostructures. --- Crystals --- Superlattices as materials --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Materials
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Metal Oxide–Based Heterostructures: Fabrication and Applications provides information on synthesis strategies, structural and hierarchical features, morphological characteristics of metal oxide–based heterostructures, and their diverse applications. This book begins with an introduction to the various multidimensional heterostructures, synthesis aspects, and techniques used to control the formation of heterostructures. Then, the impact of synthesis routes on the formation of mixed metal oxide heterostructures and their properties are analyzed. The effect of nonmetal doping, metal doping, and composites of metal oxide heterostructures on the properties of heterostructures is also addressed and that also includes opportunities for optimization of the material’s performance for specific applications. Special attention is given to the surface characteristics of the metal oxide heterostructures and their impact on the material’s performance, and the applications of metal oxide heterostructures in various fields such as environmental remediation, sensing, organic catalysis, photovoltaics, light emitting materials, and hydrogen production.
Heterostructures --- Metallic oxides. --- Metal oxides --- Metals --- Oxides --- Crystals --- Superlattices as materials --- Heterostructures.
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Superlattices as materials. --- Solar cells --- Metal organic chemical vapor deposition. --- Materials.
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Epitaxy --- Layer structure (Solids) --- Superlattices as materials --- Surface chemistry --- Congresses --- Congresses --- Congresses --- Congresses
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