Introduction to Surface Chemistry and Catalysis

2. Auflage Juni 2010
784 Seiten, Hardcover
Wiley & Sons Ltd
Kurzbeschreibung
The newest edition of this textbook emphasizes modern surface chemistry and catalysis concepts uncovered by breakthough molecular level-studies of surfaces over the past three decades. This resource also serves as a reference for properties of surfaces and interfaces. For students, the text presents the basic concepts in various properties of surfaces such as structure, thermodynamics, dynamics, electronic properties, and chemical bonds on surfaces. For advanced readers, it covers recent developments in in-situ surface analysis such as high pressure scanning tunneling microscopy, ambience pressure X-ray photoelectron spectroscopy, and sum frequency generation vibrational spectroscopy (SFG).
The newest edition of this textbook emphasizes modern surface chemistry and catalysis concepts uncovered by breakthough molecular level-studies of surfaces over the past three decades. This resource also serves as a reference for properties of surfaces and interfaces. For students, the text presents the basic concepts in various properties of surfaces such as structure, thermodynamics, dynamics, electronic properties, and chemical bonds on surfaces. For advanced readers, it covers recent developments in in-situ surface analysis such as high pressure scanning tunneling microscopy, ambience pressure X-ray photoelectron spectroscopy, and sum frequency generation vibrational spectroscopy (SFG).
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.
"It has been extensively revised, especially in the area of nanoparticles." (Chemistry World, August 2010)
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.