Surface Science: Foundations of Catalysis and Nanoscience 3rd Edition

Surface Science: Foundations of Catalysis and Nanoscience 3rd Edition book cover

Surface Science: Foundations of Catalysis and Nanoscience 3rd Edition

Author(s): Kurt W. Kolasinski (Author)

  • Publisher: Wiley–Blackwell
  • Publication Date: 10 April 2012
  • Edition: 3rd
  • Language: English
  • Print length: 572 pages
  • ISBN-10: 111999036X
  • ISBN-13: 9781119990369

Book Description

Surface science has evolved from being a sub-field of chemistry or physics, and has now established itself as an interdisciplinary topic. Knowledge has developed sufficiently that we can now understand catalysis from a surface science perspective. No-where is the underpinning nature of surface science better illustrated than with nanoscience.

Now in its third edition, this successful textbook aims to provide students with an understanding of chemical transformations and the formation of structures at surfaces. The chapters build from simple to more advanced principles with each featuring exercises, which act not only to demonstrate concepts arising in the text but also to form an integral part of the book, with the last eight chapters featuring worked solutions.

This completely revised and expanded edition features:

  • More than 100 new pages of extensive worked solutions
  • New topics, including: Second harmonic generation (SHG), Sum Frequency Generation (SFG) at interfaces and capillary waves
  • An expanded treatment of charge transfer and carbon-based materials including graphene
  • Extended ‘Frontiers and Challenges’ sections at the end of each chapter.

This text is suitable for all students taking courses in surface science in Departments of Chemistry, Physics, Chemical Engineering and Materials Science, as well as for researchers and professionals requiring an up-to-date review of the subject.

Editorial Reviews

About the Author

Professor Kurt Kolasinksi is based at West Chester University in the Department of Chemistry. His research concentrates on the study of dynamical processes at the surfaces of metals and semiconductors with a special emphasis on structure formation and laser-surface interactions. He is responsible for teaching Theoretical and Experimental Physical Chemistry as well as Surface Science.
He has published extensively in key journals and is Editor of the Surface Science section of
Current Opinion in Solid State and Materials Science. The second edition of his advanced text Surface Science was published in 2008.

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