Buch, Englisch, Band 13, 318 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 1420 g
Buch, Englisch, Band 13, 318 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 1420 g
Reihe: Topics in Molecular Organization and Engineering
ISBN: 978-0-7923-3108-7
Verlag: Springer Netherlands
This comprehensive review describes new trends in the field. Leading experts write about the nature of surface active sites, methods to identify them, and the radicals formed from adsorbed molecules interacting with the surface. The emphasis is on the fundamentals covering thermal, photostimulated and radiation induced reactions as well as diffusion processes. This provides the necessary background for technological applications.
This book will be useful to those who are interested in surface chemistry, heterogeneous catalysis as well as those who want to study reactive intermediates in chemical reactions. It is also of interest to scientists in photo and radiation physics and chemistry.
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Research
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Weitere Infos & Material
I: Properties of Catalytic Surfaces 1.- 1.1 EPR Characterization of Oxide Supported Transition Metal Ions: Relevance to Catalysis.- 1.2 Study of Catalytic Site Structure and Diffusion of Radicals in Porous Heterogeneous Systems with ESR, ENDOR and ESE.- 1.3 Theoretical Studies of Core Ionization, Excitation and De-excitation of Adsorbates.- II: Structure and Reactivity of Radicals on Surfaces 87.- II. 1 Electron Magnetic Resonance of Aromatic Radicals on Metal Oxide Surfaces 89.- II.2 ESR Studies of Organic Radical Cations in Zeolites.- II.3 Surface Trapped Electrons on Metal Vapour Modified Magnesium Oxide. Nature of Surface Centres and Reactivity with Adsorbed Molecules.- II.4 Radicals on Surfaces Formed by Ionizing Radiation.- II.5 Photostimulated Formation of Radicals on Oxide Surfaces.- III: Trends in Modern Techniques 227.- III. 1 Fourier Transform Electron Paramagnetic Resonance Studies of Photochemical Reactions in Heterogeneous Media.- III.2 Muon Spin Resonance of Radicals on Surfaces.- III.3 Investigation of Radical Ions with Time-Resolved Surface Enhanced Raman Spectroscopy.