Growth and Properties of Ultrathin Epitaxial Layers

Growth and Properties of Ultrathin Epitaxial Layers
Author: David Anthony King
Publisher: Elsevier Science Limited
Total Pages: 650
Release: 1997
Genre: Science
ISBN: 9780444827685

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1. Surface processes in epitaxial growth. -- 2. The many facets of epitaxy. -- 3. Epitaxial growth modes far from equilibrium. -- 4. Dynamics and diffusion of atoms at stepped surfaces. -- 5. Heteroepitaxial metal growth: The effects of strain. -- 6. Surface alloying in heteroepitaxial metal-on-metal growth. -- 7. Epitaxial growth of Si on Si(001). -- 8. Monolayer films of unreactive metals on semiconductors. -- 9. Structure and electronic properties of ultrathin oxide films on metallic substrates. -- 10. Chemical and spectroscopic studies of ultrathin oxide films. -- 11. Growth, structure and reactivity of ultrathin metal films on TiO2 surfaces. -- 12. Intrinsic stress of epitaxial thin films and surface layers. -- 13. Density-functional theory of epitaxial growth of metals. -- 14. Electronic structure of ultrathin magnetic films. -- 15. Ultrathin magnetic structures -- magnetism and electronic properties.

Oxide Ultrathin Films

Oxide Ultrathin Films
Author: Gianfranco Pacchioni
Publisher: John Wiley & Sons
Total Pages: 368
Release: 2012-09-19
Genre: Technology & Engineering
ISBN: 3527640193

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A wealth of information in one accessible book. Written by international experts from multidisciplinary fields, this in-depth exploration of oxide ultrathin films covers all aspects of these systems, starting with preparation and characterization, and going on to geometrical and electronic structure, as well as applications in current and future systems and devices. From the Contents: Synthesis and Preparation of Oxide Ultrathin Films Characterization Tools of Oxide Ultrathin Films Ordered Oxide Nanostructures on Metal Surfaces Unusual Properties of Oxides and Other Insulators in the Ultrathin Limit Silica and High-K Dielectrics Thin Films in Microelectronics Oxide Passive Films and Corrosion Protection Oxide Films as Catalytic Materials and as Models of Real Catalysts Oxide Films in Spintronics Oxide Ultrathin Films in Solid Oxide Fuel Cells Transparent Conducting and Chromogenic Oxide Films as Solar Energy Materials Oxide Ultrathin Films in Sensor Applications Ferroelectricity in Ultrathin Film Capacitors Titania Thin Films in Biocompatible Materials and Medical Implants Oxide Nanowires for New Chemical Sensor Devices

Epitaxial Growth of Complex Metal Oxides

Epitaxial Growth of Complex Metal Oxides
Author: Gertjan Koster
Publisher: Woodhead Publishing
Total Pages: 534
Release: 2022-04-22
Genre: Science
ISBN: 0081029462

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Epitaxial Growth of Complex Metal Oxides, Second Edition reviews techniques and recent developments in the fabrication quality of complex metal oxides, which are facilitating advances in electronic, magnetic and optical applications. Sections review the key techniques involved in the epitaxial growth of complex metal oxides and explore the effects of strain and stoichiometry on crystal structure and related properties in thin film oxides. Finally, the book concludes by discussing selected examples of important applications of complex metal oxide thin films, including optoelectronics, batteries, spintronics and neuromorphic applications. This new edition has been fully updated, with brand new chapters on topics such as atomic layer deposition, interfaces, STEM-EELs, and the epitaxial growth of multiferroics, ferroelectrics and nanocomposites. Examines the techniques used in epitaxial thin film growth for complex oxides, including atomic layer deposition, sputtering techniques, molecular beam epitaxy, and chemical solution deposition techniques Reviews materials design strategies and materials property analysis methods, including the impacts of defects, strain, interfaces and stoichiometry Describes key applications of epitaxially grown metal oxides, including optoelectronics, batteries, spintronics and neuromorphic applications

Surface Science of Ultrathin Metal Oxide Films

Surface Science of Ultrathin Metal Oxide Films
Author: J. Matharu
Publisher:
Total Pages:
Release: 2011
Genre:
ISBN:

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The properties of metal oxide surfaces are key to their diverse technological applications. However, the semiconducting nature of metal oxides presents a problem - many surface science techniques are electron based and thus require samples to be conducting. As such, bulk crystal studies of metal oxides by techniques such as photoemission spectroscopy (PES) and scanning tunneling microscopy (STM) are limited to reduced surfaces. Alternatively, thin films of a metal oxide can be synthesised on a suitable conducting substrate that mimic the bulk crystal surface whilst having sufficient conducting character to use these techniques. CeO2 is an important material found in three-way catalysts that remove pollutants from the exhaust gas of modern automobiles. Key to this application is the ability of reduced ceria to store and release oxygen depending on the composition of the exhaust. The addition of noble metals such as Pd to the ceria surface greatly improves the efficiency of pollutant conversion evidenced by X-ray photoelectron spectroscopy (XPS) by reducing the ceria. Resonance photoemission spectroscopy (RESPES) has been used to investigate the eect of Pd on ceria CeO2-x(110) thin films grown on a Pt(111) substrate. RESPES is more surface specific than XPS and thus reveals more information on the surface layers of ceria films. TiO2(110) is the most studied metal oxide surface, and has a multitude of applications. Its chemistry with two of the most abundant chemical species - water (H2O) and oxygen (O2) - is thus very important. H2O has been shown to dissociate on TiO2 surfaces. TiO2 thin films grown on W(100) were used as model system to study the chemistry of the reaction between TiO2 and H2O, and subsequently the reaction of hydrated surfaces with O2 using XPS. STM was used to examine the morphology of TiO2(110) films grown on W(100)-(2 x 1)-O, changes with film thickness and methods of improving surface smoothness. The first detailed STM images showing row structure of TiO2(110) films grown on W are shown.

Recent Developments in Oxide and Metal Epitaxy - Theory and Experiment:

Recent Developments in Oxide and Metal Epitaxy - Theory and Experiment:
Author: Mark Yeadon
Publisher: Cambridge University Press
Total Pages: 238
Release: 2014-06-05
Genre: Technology & Engineering
ISBN: 9781107413085

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Thin-film epitaxy is integral to many current and emerging technologies, and continued progress in solving critical issues is essential to the realization of new devices. This book, first published in 2000, focuses on progress in solving fundamental issues in the epitaxial growth of metals and oxides. Insights from both experiment, and modeling are combined to facilitate cross fertilization of ideas and understanding. Highlighted is the use of in situ characterization techniques for enhancing the efficiency of materials development. Thin-film research is often empirical in nature. Techniques for minimizing the time spent exploring the complex parameter space in order to optimize growth and processing conditions are of particular value. Among the techniques discussed are spectroscopic ellipsometry and ion scattering and recoil spectrometry, LEEM (low-energy electron microscopy), STM (scanning tunneling microscopy), TEM (transmission electron microscopy) and RHEED (reflection high-energy electron diffraction). Topics include: growth and dynamics of metal films; structure and oxidation of metal films and surfaces; in situ studies of oxide growth and epitaxial growth of oxides.

Ultrathin Metal Films

Ultrathin Metal Films
Author: Matthias Wuttig
Publisher: Springer Science & Business Media
Total Pages: 400
Release: 2004-11-17
Genre: Technology & Engineering
ISBN: 9783540583592

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This research monograph discusses the close correlation between the magnetic and structural properties of thin films in the context of numerous examples of epitaxial metal films, while emphasis is laid on the stabilization of novel structures compared to the bulk material. Further options, possibilities, and limits for applications are given. Techniques for the characterization of thin films are addressed as well.