Advances in Catalytic Activation of Dioxygen by Metal Complexes
Title | Advances in Catalytic Activation of Dioxygen by Metal Complexes PDF eBook |
Author | László I. Simándi |
Publisher | Springer Science & Business Media |
Pages | 349 |
Release | 2006-04-11 |
Genre | Science |
ISBN | 0306478161 |
The subject of dioxygen activation and homogeneous catalytic oxidation by metal complexes has been in the focus of attention over the last 20 years. The widespread interest is illustrated by its recurring presence among the sessions and subject areas of important international conferences on various aspects of bioinorganic and coordination chemistry as well as catalysis. The most prominent examples are ICCC, ICBIC, EUROBIC, ISHC, and of course the ADHOC series of meetings focusing on the subject itself. Similarly, the number of original and review papers devoted to various aspects of dioxygen activation are on the rise. This trend is due obviously to the relevance of catalytic oxidation to biological processes such as dioxygen transport, and the action of oxygenase and oxidase enzymes related to metabolism. The structural and functional modeling of metalloenzymes, particularly of those containing iron and copper, by means of low-molecular complexes of iron, copper, ruthenium, cobalt, manganese, etc., have provided a wealth of indirect information helping to understand how the active centers of metalloenzymes may operate. The knowledge gained from the study of metalloenzyme models is also applicable in the design of transition metal complexes as catalytsts for specific reactions. This approach has come to be known as biomimetic or bioinspired catalysis and continues to be a fruitful and expanding area of research.
Advances in Catalytic Activation of Dioxygen by Metal Complexes
Title | Advances in Catalytic Activation of Dioxygen by Metal Complexes PDF eBook |
Author | Laszlo I. Simandi |
Publisher | |
Pages | 356 |
Release | 2014-01-15 |
Genre | |
ISBN | 9781475785050 |
Catalytic Activation of Dioxygen by Metal Complexes
Title | Catalytic Activation of Dioxygen by Metal Complexes PDF eBook |
Author | László I. Simándi |
Publisher | Springer Science & Business Media |
Pages | 420 |
Release | 1992-07-31 |
Genre | Science |
ISBN | 9780792318965 |
The activation of dioxygen by metal ions has both synthetic potential and biological relevance. Dioxygen is the cleanest oxidant for use in emission-free technologies to minimize pollution of the environment. The book gives a survey of those catalyst systems based on metal complexes which have been discovered and studied in the last decade. They activate molecular oxygen and effect the oxidation of various organic compounds under mild conditions. Much of the recent progress is due to a search for biomimetic catalysts that would duplicate the action of metalloenzymes. Mechanistic aspects are emphasized throughout the book. An introductonary chapter reviews the chemistry of transition metal dioxygen complexes, which are usually the active intermediates in the catalytic reactions discussed. Separate chapters are devoted to oxidation of saturated, unsaturated and aromatic hydrocarbons, phenols, catechols, oxo-compounds, phosphorus, sulfur and nitrogen compounds.
Heterocycles from Transition Metal Catalysis
Title | Heterocycles from Transition Metal Catalysis PDF eBook |
Author | András Kotschy |
Publisher | Springer Science & Business Media |
Pages | 224 |
Release | 2005-09-30 |
Genre | Science |
ISBN | 9781402036248 |
"Heterocycles from Transition Metal Catalysis: Formation and Functionalization" provides a concise summary of the prominent role of late transition metal (palladium, nickel, copper) catalysed processes in the synthesis and functionalization of heterocyclic systems. It gives an introduction to catalytic transformations, an overview of the most important reaction types, and presents synthetically useful catalytic processes classified by the target system and the type of transformation. The book provides a representative selection of transition metal catalysed reactions transformations that are relevant in heterocyclic chemistry. In this way, the authors present a useful resource for members of the academic community looking for a textbook as well as industrial chemists in search of a reference book. This book will be an invaluable resource for synthetic chemists, medicinal chemists, and those more generally interested in applied catalysis.
Flavin-Based Catalysis
Title | Flavin-Based Catalysis PDF eBook |
Author | Radek Cibulka |
Publisher | John Wiley & Sons |
Pages | 393 |
Release | 2021-06-10 |
Genre | Technology & Engineering |
ISBN | 3527830146 |
The book gives a unique overview of this rapidly developing research field, presenting structures and properties of flavin derivatives as well as their proven application as bioinspired catalysts in various organocatalytic, biocatalytic, and photocatalytic reactions.
Applied Homogeneous Catalysis with Organometallic Compounds
Title | Applied Homogeneous Catalysis with Organometallic Compounds PDF eBook |
Author | Boy Cornils |
Publisher | John Wiley & Sons |
Pages | 2120 |
Release | 2017-09-05 |
Genre | Science |
ISBN | 3527651756 |
The completely revised third edition of this four-volume classic is fully updated and now includes such topics as as CH-activation and multicomponent reactions. It describes the most important reaction types, new methods and recent developments in catalysis. The internationally renowned editors and a plethora of international authors (including Nobel laureate R. Noyori) guarantee high quality content throughout the book. A "must read" for everyone in academia and industry working in this field.
Transition Metal Catalysis in Aerobic Alcohol Oxidation
Title | Transition Metal Catalysis in Aerobic Alcohol Oxidation PDF eBook |
Author | Francesca Cardona |
Publisher | Royal Society of Chemistry |
Pages | 304 |
Release | 2015 |
Genre | Science |
ISBN | 1849738238 |
This book deals with the search for environmentally benign procedures for the oxidation of alcohols and gives an overview of their transition-metal-catalyzed aerobic oxidation.