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Surface analysis methods in materials science

Contributor(s): Series: Springer Series in Surface SciencePublication details: Springer-Verlag, 2003 Berlin:Edition: 2ndDescription: xxvi, 585p. ; pb. ; 23cmISBN:
  • 9783642074585
Subject(s): DDC classification:
  • 620.44 OCO
Summary: This comprehensive and up-to-date guide to the use of surface analysis methods in materials science consists of three parts: an extensive introduction to the concepts of surface structure and composition, a techniques section describing fourteen surface methods and a separate section on applications. Each chapter is written by a specialist in the field. The surface methods described include SAM, XPS, SIMS and other ion beam methods, LEED/RHEED, RBS and NRA, FTIR, SEM, STM, UPS and magnetic methods. Among the areas of application discussed are adsorption, catalysis, coated steel surfaces, inorganic surfaces, semiconductor devices, thin film solar cells and high temperature oxidation. This detailed exposition will enable researchers to select and exploit the appropriate surface method for a given application
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Item type Current library Collection Call number Copy number Status Date due Barcode
Books Books IIT Gandhinagar General 620.44 OCO (Browse shelf(Opens below)) Available 011382
Books Books IIT Gandhinagar General Stacks General 620.44 OCO (Browse shelf(Opens below)) 1 Available 030603

Includes bibliography and index

This comprehensive and up-to-date guide to the use of surface analysis methods in materials science consists of three parts: an extensive introduction to the concepts of surface structure and composition, a techniques section describing fourteen surface methods and a separate section on applications. Each chapter is written by a specialist in the field. The surface methods described include SAM, XPS, SIMS and other ion beam methods, LEED/RHEED, RBS and NRA, FTIR, SEM, STM, UPS and magnetic methods. Among the areas of application discussed are adsorption, catalysis, coated steel surfaces, inorganic surfaces, semiconductor devices, thin film solar cells and high temperature oxidation. This detailed exposition will enable researchers to select and exploit the appropriate surface method for a given application

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