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Poisoning and promotion in catalysis based on surface science concepts and experiments /

The topics covered in this book include a variety of adsorption and model reaction studies on clean and modified single crystal metal surfaces obtained by means of properly selected surface sensitive techniques. The accent is on the revelation of the physics and chemistry involved in the effects of...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Kiskinova, M. P. (Maya Petrova), 1949-
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Amsterdam ; New York : Elsevier, 1992.
Colección:Studies in surface science and catalysis ; 70.
Temas:
Acceso en línea:Texto completo
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Tabla de Contenidos:
  • Front Cover; Poisoning and Promotion in Catalysis Based on Surface Science Concepts And Experiments; Copyright Page; CONTENTS; PREFACE; CHAPTER 1. INTRODUCTION; CHAPTER 2. SURFACE SCIENCE METHODS; 2.1. DYNAMICAL METHODS; 2.2. STATIC METHODS; References; CHAPTER 3. EXPERIMENTAL APPROACH; References; CHAPTER 4. INTERACTION OF ATOMIC ADSORBATES, ACTING AS PROMOTERS OR POISONS, WITH SINGLE CRYSTAL SURFACES; 4.1. ELECTROPOSITIVE ADDITIVES: ALKALI METALS; 4.2. ELECTRONEGATIVE ADDITIVES; References; CHAPTER 5. ADSORPTION OF GASES ON SURFACES MODIFIED BY ELECTRONEGATIVE ADDITIVES
  • 5.1. CARBON MONOXIDE5.2. NITRIC OXIDE; 5.3. NITROGEN AND OXYGEN; 5.4. HYDROGEN; 5.5. WATER; 5.6. ORGANIC COMPOUNDS; 5.7. CONCLUSIVE REMARKS: THE POISONING EFFECT DESCRIBED WITHIN THE FRAMEWORK OF THE POSSIBLE INTERACTIONS IN THE COADSORBED LAYER; References; CHAPTER 6. ADSORPTION OF GASES ON SURFACES MODIFIED BY ALKALI METALS; 6.1. CARBON MONOXIDE; 6.2. CARBON DIOXIDE; 6.3. NITRIC OXIDE; 6.4. OXYGEN; 6.5. WATER; 6.6. HYDROGEN; 6.7. NITROGEN; 6.8. ORGANIC COMPOUNDS; 6.9. AMMONIA; 6.10. ALKALI MODIFICATION EFFECTS AND FACTORS DETERMINING THE TYPE OF THE INTERACTIONS IN THE MIXED LAYERS
  • 8.7. CONCLUSIVE REMARKS: CORRELATIONS BETWEEN THE ADSORPTIVE AND THE CATALYTIC ACTIVITY AND SELECTIVITYReferences; INDEX; STUDIES IN SURFACE SCIENCE AND CATALYSIS