The Handbook of surface imaging and visualization

書誌事項

The Handbook of surface imaging and visualization

edited by Arthur T. Hubbard

CRC Press, c1995

大学図書館所蔵 件 / 17

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注記

Includes bibliographical references and index

内容説明・目次

内容説明

This exciting new handbook investigates the characterization of surfaces. It emphasizes experimental techniques for imaging of solid surfaces and theoretical strategies for visualization of surfaces, areas in which rapid progress is currently being made. This comprehensive, unique volume is the ideal reference for researchers needing quick access to the latest developments in the field and an excellent introduction to students who want to acquaint themselves with the behavior of electrons, atoms, molecules, and thin-films at surfaces. It's all here, under one cover! The Handbook of Surface Imaging and Visualization is filled with sixty-four of the most powerful techniques for characterization of surfaces and interfaces in the material sciences, medicine, biology, geology, chemistry, and physics. Each discussion is easy to understand, succinct, yet incredibly informative. Data illustrate present research in each area of study. A wide variety of the latest experimental and theoretical approaches are included with both practical and fundamental objectives in mind. Key references are included for the reader's convenience for locating the most recent and useful work on each topic. Readers are encouraged to contact the authors or consult the references for additional information. This is the best ready reference available today. It is a perfect source book or supplemental text on the subject.

目次

ANGLE RESOLVED AUGER ELECTRON SPECTROSCOPY, D.G. Frank Introduction Auger Electron Emission from Solid Surfaces The Auger Phenomenon Angle-Resolved Auger Electron Measurements Experimental Considerations Auger Electron KE and the "Secant Effect" Incident Radiation Angle-Resolving Analyzers Auger Signal Detection Data Visualization Theoretical Approaches Basic Principles Empirical Trends Empirical Blocking Model Inelastic Scattering Elastic Scattering Example Applications Depth Profiling Monolayer Structure Bilayer Structure Single Crystals Layered Crystals Acknowledgements References Atomic Force Microscopy, A.A. Gewirth and J.R. LaGraff Introduction General Principles AFM Operation Tip-Sample Interaction Representative Results Electrochemistry Biological Systems Self-Assembled Langmuir-Blodgett Films Crystal Dissolution and Growth Future Prospects Acknowledgement References Auger Electron Spectroscopy, N.H. Turner Introduction Basics Elemental Identification Surface Sensitivity Overview of Spectral Features Instrumentation Vacuum Systems Electron Sources Energy Analyzers Other Accessories Spectral Features Main Spectral Features Charging Quantification Summary References Chemical Imaging Using Ion Microscopy, I. Gay and G.H. Morrison Introduction Instrumentation Detection and Image Acquisition Systems Quantification Applications of Ion Microscopy Materials Science and Geology Biology and Medicine Conclusions Acknowledgements References Collision Induced Surface Processes, S.T. Ceyer Introduction Examples of Collision Induced Surface Processes Translational Activation Collision Induced Activation Collision Induced Desorption Collision Induced Absorption Collision Induced Recombinative Desorption Signficance of Collision Induced Surface Processes

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