Microscopy of Oxidation

Microscopy of Oxidation PDF

Author: G.W. Lorimer

Publisher: CRC Press

Published: 2023-06-09

Total Pages: 439

ISBN-13: 1000946797

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Microscopy of Oxidation: the proceedings of the Second International Conference Held at Selwyn College, University of Cambridge, in 1991.

Microscopy of Oxidation

Microscopy of Oxidation PDF

Author: Michael John Bennett

Publisher: CRC Press

Published: 1991

Total Pages: 444

ISBN-13:

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Covers the reaction processes from oxide failure nucleation, through scale growth, as well as the possibilities of alloy design for improved oxidation resistance using a wide range of microscopical techniques.

Microscopy of Oxidation 2

Microscopy of Oxidation 2 PDF

Author: S. B. Newcomb

Publisher: CRC Press

Published: 1993

Total Pages: 593

ISBN-13: 9780901716507

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An understanding of oxidation is essential for the study and development of advanced materials, particularly those which must withstand high temperatures. The 56 papers in this volume examine the behaviour of metals, alloys and ceramics when exposed to different environments and discuss the latest analytical microscopical techniques currently used in materials science.

Springer Handbook of Microscopy

Springer Handbook of Microscopy PDF

Author: Peter W. Hawkes

Publisher: Springer Nature

Published: 2019-11-02

Total Pages: 1561

ISBN-13: 3030000699

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This book features reviews by leading experts on the methods and applications of modern forms of microscopy. The recent awards of Nobel Prizes awarded for super-resolution optical microscopy and cryo-electron microscopy have demonstrated the rich scientific opportunities for research in novel microscopies. Earlier Nobel Prizes for electron microscopy (the instrument itself and applications to biology), scanning probe microscopy and holography are a reminder of the central role of microscopy in modern science, from the study of nanostructures in materials science, physics and chemistry to structural biology. Separate chapters are devoted to confocal, fluorescent and related novel optical microscopies, coherent diffractive imaging, scanning probe microscopy, transmission electron microscopy in all its modes from aberration corrected and analytical to in-situ and time-resolved, low energy electron microscopy, photoelectron microscopy, cryo-electron microscopy in biology, and also ion microscopy. In addition to serving as an essential reference for researchers and teachers in the fields such as materials science, condensed matter physics, solid-state chemistry, structural biology and the molecular sciences generally, the Springer Handbook of Microscopy is a unified, coherent and pedagogically attractive text for advanced students who need an authoritative yet accessible guide to the science and practice of microscopy.

Fundamental Aspects of Silicon Oxidation

Fundamental Aspects of Silicon Oxidation PDF

Author: Yves J. Chabal

Publisher: Springer Science & Business Media

Published: 2001-04-24

Total Pages: 288

ISBN-13: 9783540416821

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The idea for a book dealing specifically with elementary processes in silicon oxidation was formulated after a stimulating symposium that I organized at the American Physical Society meeting in March, 1998. The symposium, en titled "Dynamics of silicon etching and oxidation", explored the mechanisms governing silicon oxidation. With three experimental talks (Hines, Weldon and Gibson) and two theoretical presentations (Pasquarello and Pantelides), it provided a good cross-section of the recent efforts to characterize the in terfacial region of silicon oxide grown on silicon. The novelty of this work comes from the present experimental and theo retical advances that allow the investigation of the formation of ultra-thin silicon oxides. Although structural characterization of bulk silicon oxides and electrical characterization of thin oxides and their interfaces with silicon have produced an extensive body of work over more than forty years, a mechanis tic understanding of the initial oxidation processes has remained elusive. In the past, both the experimental and theoretical efforts have been thwarted by the complexity of dealing with the formation of a mostly amorphous oxide on a crystalline substrate. In this book we present a survey of the state-of-the-art methods, both ex perimental and theoretical, specifically dealing with the issue of amorphous dielectric growth. Each chapter critically reviews and cross-correlates infor mation provided by experimental techniques, such as microscopy, spectro scopy, or scattering, with results obtained using theoretical methods, such as ab initio electronic structure calculations, molecular dynamics, and Monte Carlo simulations.

Introduction to the High Temperature Oxidation of Metals

Introduction to the High Temperature Oxidation of Metals PDF

Author: Neil Birks

Publisher: Cambridge University Press

Published: 2006-03-30

Total Pages: 5

ISBN-13: 1139449095

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A straightforward treatment describing the oxidation processes of metals and alloys at elevated temperatures. This 2006 second edition retains the fundamental theory but incorporates advances made in understanding degradation phenomena. The first half provides an authoritative introduction to the basic principles, covering thermodynamics and mechanisms of high temperature corrosion of metals and alloys. The latter half extends the discussion to oxidation processes in complex systems, from reactions in mixed environments to protective techniques, including coatings and atmosphere control. The authors provide a logical and expert treatment of the subject, producing a revised edition that will be a comprehensive guide to material scientists and engineers requiring an understanding of this elementary process.

Electron Microscopy and Analysis 1999

Electron Microscopy and Analysis 1999 PDF

Author: C. J. Kiely

Publisher: CRC Press

Published: 1999-12-01

Total Pages: 1320

ISBN-13: 9780750305778

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Electron Microscopy and Analysis 1999 provides an overview of recent developments and outlines opportunities for future research in electron microscopy. The book presents the wide-ranging applications of these techniques in materials science, metallurgy, and surface science. It is an authoritative reference for academics and researchers working in materials science, instrumentation, electron optics, and condensed matter physics.