Somorjai / Li | Introduction to Surface Chemistry and Catalysis | Buch | 978-0-470-50823-7 | sack.de

Buch, Englisch, 800 Seiten, Format (B × H): 187 mm x 260 mm, Gewicht: 1537 g

Somorjai / Li

Introduction to Surface Chemistry and Catalysis


2. Auflage 2010
ISBN: 978-0-470-50823-7
Verlag: Wiley

Buch, Englisch, 800 Seiten, Format (B × H): 187 mm x 260 mm, Gewicht: 1537 g

ISBN: 978-0-470-50823-7
Verlag: Wiley


Now updated-the current state of development of modern surface science
Since the publication of the first edition of this book, molecular surface chemistry and catalysis science have developed rapidly and expanded into fields where atomic scale and molecular information were previously not available. This revised edition of Introduction to Surface Chemistry and Catalysis reflects this increase of information in virtually every chapter. It emphasizes the modern concepts of surface chemistry and catalysis uncovered by breakthroughs in molecular-level studies of surfaces over the past three decades while serving as a reference source for data and concepts related to properties of surfaces and interfaces.

The book opens with a brief history of the evolution of surface chemistry and reviews the nature of various surfaces and interfaces encountered in everyday life. New research in two crucial areas-nanomaterials and polymer and biopolymer interfaces-is emphasized, while important applications in tribology and catalysis, producing chemicals and fuels with high turnover and selectivity, are addressed. The basic concepts surrounding various properties of surfaces such as structure, thermodynamics, dynamics, electrical properties, and surface chemical bonds are presented. The techniques of atomic and molecular scale studies of surfaces are listed with references to up-to-date review papers. For advanced readers, this book covers recent developments in in-situ surface analysis such as high- pressure scanning tunneling microscopy, ambient pressure X-ray photoelectron spectroscopy, and sum frequency generation vibrational spectroscopy (SFG). Tables listing surface structures and data summarizing the kinetics of catalytic reactions over metal surfaces are also included.

New to this edition:

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A discussion of new physical and chemical properties of nanoparticles

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Ways to utilize new surface science techniques to study properties of polymers, reaction intermediates, and mobility of atoms and molecules at surfaces

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Molecular-level studies on the origin of the selectivity for several catalytic reactions

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A microscopic understanding of mechanical properties of surfaces

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Updated tables of experimental data

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A new chapter on "soft" surfaces, polymers, and biointerfaces


Introduction to Surface Chemistry and Catalysis serves as a textbook for undergraduate and graduate students taking advanced courses in physics, chemistry, engineering, and materials science, as well as researchers in surface science, catalysis science, and their applications.

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Weitere Infos & Material


Preface.
Introduction.

1 Surfaces: An Introduction.

2 The Structure of Surfaces.

3 Thermodynamics of Surfaces.

4 Dynamics at Surfaces.

5 Electrical Properties of Surfaces.

6 Surface Chemical Bond.

7 Mechanical Properties of Surfaces.

8 Polymer Surfaces and Biointerfaces.

9 Catalysis by Surfaces.

Index.


Gabor A. Somorjai, PhD, has been a professor in the Department of Chemistry at the University of California, Berkeley, since 1964. He is a pioneer in studies of molecular surface chemistry and catalysis science. Dr. Somorjai is a member of both the National Academy of Sciences and the American Academy of Arts and Sciences. He is the recipient of the National Medal of Science, the Wolf Prize in Chemistry, and the Priestley Medal as well as the Peter Debye Award and several other ACS awards.
Yimin Li, PhD, is an Associate Specialist in the Department of Chemistry at the University of California, Berkeley. His current research interests include the oxidation of nanoparticles, the compensation effect in heterogeneous catalysis, and sum frequency generation vibrational spectroscopy at interfaces.



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