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Practical guide to surface science and spectroscopy / Yip-Wah Chung.

By: Chung, Yip-wah, 1950-Material type: TextTextPublication details: San Diego : Academic Press, ©2001. Description: 1 online resource (xiii, 186 pages) : illustrationsContent type: text Media type: computer Carrier type: online resourceISBN: 9781429482837; 1429482834Other title: Surface science and spectroscopySubject(s): Surfaces (Physics) | Spectrum analysis | SCIENCE -- Physics -- Condensed Matter | Spectrum analysis | Surfaces (Physics)Genre/Form: Electronic books. | Electronic books. Additional physical formats: Print version:: Practical guide to surface science and spectroscopy.DDC classification: 530.4/17 LOC classification: QC173.4.S94 | C48 2001ebOnline resources: Click here to access online
Contents:
Chapter 1. Fundamental Concepts in Ultrahigh Vacuum, Surface Preparation, and Electron Spectroscopy; Chapter 2. Auger Electron Spectroscopy; Chapter 3. Photoelectron Spectroscopy; Chapter 4. Inelastic Scattering of Electrons and Ions; Chapter 5. Low-Energy Electron Diffraction; Chapter 6. Scanning Probe Microscopy; Chapter 7. Interfacial Segregation; Chapter 8. Metal-Semiconductor Interfaces; Chapter 9. Gas-Surface Interactions.
Summary: Practical Guide to Surface Science and Spectroscopy provides a practical introduction to surface science as well as describes the basic analytical techniques that researchers use to understand what occurs at the surfaces of materials and at their interfaces. These techniques include auger electron spectroscopy, photoelectron spectroscopy, inelastic scattering of electrons and ions, low energy electron diffraction, scanning probe microscopy, and interfacial segregation. Understanding the behavior of materials at their surfaces is essential for materials scientists and engineers as they design and fabricate microelectronics and semiconductor devices.
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Includes bibliographical references and index.

Print version record.

Chapter 1. Fundamental Concepts in Ultrahigh Vacuum, Surface Preparation, and Electron Spectroscopy; Chapter 2. Auger Electron Spectroscopy; Chapter 3. Photoelectron Spectroscopy; Chapter 4. Inelastic Scattering of Electrons and Ions; Chapter 5. Low-Energy Electron Diffraction; Chapter 6. Scanning Probe Microscopy; Chapter 7. Interfacial Segregation; Chapter 8. Metal-Semiconductor Interfaces; Chapter 9. Gas-Surface Interactions.

Practical Guide to Surface Science and Spectroscopy provides a practical introduction to surface science as well as describes the basic analytical techniques that researchers use to understand what occurs at the surfaces of materials and at their interfaces. These techniques include auger electron spectroscopy, photoelectron spectroscopy, inelastic scattering of electrons and ions, low energy electron diffraction, scanning probe microscopy, and interfacial segregation. Understanding the behavior of materials at their surfaces is essential for materials scientists and engineers as they design and fabricate microelectronics and semiconductor devices.

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