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This guide to the use of surface analysis techniques, now in its second edition, has expanded to include more techniques, current applications and updated references. It outlines the application of surface analysis techniques to a broad range of studies in materials science and engineering. The book consists of three parts: an extensive introduction to the concepts of surface structure and composition, a techniques section describing 19 techniques and a section on applications. Each chapter has been written by specialists in the field who draw on their experience in current developments and applications. This book is aimed at industrial scientists and engineers in research and development seeking a description of available techniques in a concise but informative style. It is invaluable as a comprehensive text for scientists and engineers attending training courses and workshops. The level and content of this book make it ideal as a course text for senior undergraduate and postgraduate students in materials science, materials engineering, physics, chemistry and metallurgy.




This guide to the use of surface analysis techniques, now in its second edition, has expanded to include more techniques, current applications and updated references. It outlines the application of surface analysis techniques to a broad range of studies in materials science and engineering. The book consists of three parts: an extensive introduction to the concepts of surface structure and composition, a techniques section describing 19 techniques and a section on applications. Each chapter has been written by specialists in the field who draw on their experience in current developments and applications. This book is aimed at industrial scientists and engineers in research and development seeking a description of available techniques in a concise but informative style. It is invaluable as a comprehensive text for scientists and engineers attending training courses and workshops. The level and content of this book make it ideal as a course text for senior undergraduate and postgraduate students in materials science, materials engineering, physics, chemistry and metallurgy.


This guide to the use of surface analysis techniques, now in its second edition, has expanded to include more techniques, current applications and updated references. It outlines the application of surface analysis techniques to a broad range of studies in materials science and engineering. The book consists of three parts: an extensive introduction to the concepts of surface structure and composition, a techniques section describing 19 techniques and a section on applications. Each chapter has been written by specialists in the field who draw on their experience in current developments and applications. This book is aimed at industrial scientists and engineers in research and development seeking a description of available techniques in a concise but informative style. It is invaluable as a comprehensive text for scientists and engineers attending training courses and workshops. The level and content of this book make it ideal as a course text for senior undergraduate and postgraduate students in materials science, materials engineering, physics, chemistry and metallurgy.
Content:
Front Matter....Pages I-XXVI
Front Matter....Pages 1-1
Solid Surfaces, Their Structure and Composition....Pages 3-69
UHV Basics....Pages 71-81
Front Matter....Pages 83-83
Electron Microscope Techniques for Surface Characterization....Pages 85-105
Sputter Depth Profiling....Pages 107-125
SIMS — Secondary Ion Mass Spectrometry....Pages 127-154
Auger Electron Spectroscopy and Microscopy — Techniques and Applications....Pages 155-174
X-Ray Photoelectron Spectroscopy....Pages 175-201
Vibrational Spectroscopy of Surfaces....Pages 203-228
Rutherford Backscattering Spectrometry and Nuclear Reaction Analysis....Pages 229-246
Materials Characterization by Scanned Probe Analysis....Pages 247-285
Low Energy Ion Scattering....Pages 287-305
Reflection High Energy Electron Diffraction....Pages 307-318
Low Energy Electron Diffraction....Pages 319-335
Ultraviolet Photoelectron Spectroscopy of Solids....Pages 337-345
EXAFS....Pages 347-373
Front Matter....Pages 375-375
Minerals, Ceramics and Glasses....Pages 377-403
Characterization of Catalysts by Surface Analysis....Pages 405-433
Application to Semiconductor Devices....Pages 435-454
Characterisation of Oxidised Surfaces....Pages 455-471
Coated Steel....Pages 473-487
Front Matter....Pages 375-375
Thin Film Analysis....Pages 489-503
Identification of Adsorbed Species....Pages 505-518
Surface Analysis of Polymers....Pages 519-551
Glow Discharge Optical Emission Spectrometry....Pages 553-559
Back Matter....Pages 561-587


This guide to the use of surface analysis techniques, now in its second edition, has expanded to include more techniques, current applications and updated references. It outlines the application of surface analysis techniques to a broad range of studies in materials science and engineering. The book consists of three parts: an extensive introduction to the concepts of surface structure and composition, a techniques section describing 19 techniques and a section on applications. Each chapter has been written by specialists in the field who draw on their experience in current developments and applications. This book is aimed at industrial scientists and engineers in research and development seeking a description of available techniques in a concise but informative style. It is invaluable as a comprehensive text for scientists and engineers attending training courses and workshops. The level and content of this book make it ideal as a course text for senior undergraduate and postgraduate students in materials science, materials engineering, physics, chemistry and metallurgy.
Content:
Front Matter....Pages I-XXVI
Front Matter....Pages 1-1
Solid Surfaces, Their Structure and Composition....Pages 3-69
UHV Basics....Pages 71-81
Front Matter....Pages 83-83
Electron Microscope Techniques for Surface Characterization....Pages 85-105
Sputter Depth Profiling....Pages 107-125
SIMS — Secondary Ion Mass Spectrometry....Pages 127-154
Auger Electron Spectroscopy and Microscopy — Techniques and Applications....Pages 155-174
X-Ray Photoelectron Spectroscopy....Pages 175-201
Vibrational Spectroscopy of Surfaces....Pages 203-228
Rutherford Backscattering Spectrometry and Nuclear Reaction Analysis....Pages 229-246
Materials Characterization by Scanned Probe Analysis....Pages 247-285
Low Energy Ion Scattering....Pages 287-305
Reflection High Energy Electron Diffraction....Pages 307-318
Low Energy Electron Diffraction....Pages 319-335
Ultraviolet Photoelectron Spectroscopy of Solids....Pages 337-345
EXAFS....Pages 347-373
Front Matter....Pages 375-375
Minerals, Ceramics and Glasses....Pages 377-403
Characterization of Catalysts by Surface Analysis....Pages 405-433
Application to Semiconductor Devices....Pages 435-454
Characterisation of Oxidised Surfaces....Pages 455-471
Coated Steel....Pages 473-487
Front Matter....Pages 375-375
Thin Film Analysis....Pages 489-503
Identification of Adsorbed Species....Pages 505-518
Surface Analysis of Polymers....Pages 519-551
Glow Discharge Optical Emission Spectrometry....Pages 553-559
Back Matter....Pages 561-587
....
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