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Epitaxial Growth of Complex Metal Oxides (Paperback, 2nd edition): Gertjan Koster, Mark Huijben, Guus Rijnders Epitaxial Growth of Complex Metal Oxides (Paperback, 2nd edition)
Gertjan Koster, Mark Huijben, Guus Rijnders
R6,556 Discovery Miles 65 560 Ships in 12 - 19 working days

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.

Epitaxial Growth of Complex Metal Oxides (Hardcover): Gertjan Koster, Mark Huijben, Guus Rijnders Epitaxial Growth of Complex Metal Oxides (Hardcover)
Gertjan Koster, Mark Huijben, Guus Rijnders
R8,640 R5,904 Discovery Miles 59 040 Save R2,736 (32%) Ships in 12 - 19 working days

The atomic arrangement and subsequent properties of a material are determined by the type and conditions of growth leading to epitaxy, making control of these conditions key to the fabrication of higher quality materials. Epitaxial Growth of Complex Metal Oxides reviews the techniques involved in such processes and highlights recent developments in fabrication quality which are facilitating advances in applications for electronic, magnetic and optical purposes. Part One reviews the key techniques involved in the epitaxial growth of complex metal oxides, including growth studies using reflection high-energy electron diffraction, pulsed laser deposition, hybrid molecular beam epitaxy, sputtering processes and chemical solution deposition techniques for the growth of oxide thin films. Part Two goes on to 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 in Part Three.

In Situ Characterization of Thin Film Growth (Hardcover, New): Gertjan Koster, Guus Rijnders In Situ Characterization of Thin Film Growth (Hardcover, New)
Gertjan Koster, Guus Rijnders
R4,286 Discovery Miles 42 860 Ships in 12 - 19 working days

Advanced techniques for characterizing thin film growth in situ help to develop improved understanding and faster diagnosis of issues with the process. In situ characterization of thin film growth reviews current and developing techniques for characterizing the growth of thin films, covering an important gap in research.
Part one covers electron diffraction techniques for in situ study of thin film growth, including chapters on topics such as reflection high-energy electron diffraction (RHEED) and inelastic scattering techniques. Part two focuses on photoemission techniques, with chapters covering ultraviolet photoemission spectroscopy (UPS), X-ray photoelectron spectroscopy (XPS) and in situ spectroscopic ellipsometry for characterization of thin film growth. Finally, part three discusses alternative in situ characterization techniques. Chapters focus on topics such as ion beam surface characterization, real time in situ surface monitoring of thin film growth, deposition vapour monitoring and the use of surface x-ray diffraction for studying epitaxial film growth.
With its distinguished editors and international team of contributors, In situ characterization of thin film growth is a standard reference for materials scientists and engineers in the electronics and photonics industries, as well as all those with an academic research interest in this area.
Chapters review electron diffraction techniques, including the methodology for observations and measurementsDiscusses the principles and applications of photoemission techniquesExamines alternative in situ characterisation techniques

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