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Advances in Catalytic Activation of Dioxygen by Metal Complexes - László I. Simándi
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2003, ISBN: 9781402010743

ID: 692773501

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 Bücher > Fremdsprachige Bücher > Englische Bücher gebundene Ausgabe 31.01.2003, Springer, .200

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Advances in Catalytic Activation of Dioxygen by Metal Complexes - László I. Simándi
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ISBN: 9781402010743

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Advances in Catalytic Activation of Dioxygen by Metal Complexes 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. Bücher / Fremdsprachige Bücher / Englische Bücher 978-1-4020-1074-3, Springer

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Advances in Catalytic Activation of Dioxygen by Metal Complexes - László I. Simándi
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Advances in Catalytic Activation of Dioxygen by Metal Complexes - neues Buch

ISBN: 9781402010743

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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 Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, Springer

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Advances in Catalytic Activation of Dioxygen by Metal Complexes
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Advances in Catalytic Activation of Dioxygen by Metal Complexes - neues Buch

ISBN: 9781402010743

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The catalytic activation of dioxygen continues to attract interest both due to its biological importance and synthetic potential. Metalloenzymes play crucial roles in metabolism by living organisms. The modelling of metalloenzymes by biomimetic metal complexes helps the search for useful oxidation catalysts and the understanding of their mechanisms of operation. Dioxygen is also the oxidant of choice in emission-free technologies aimed at minimising pollution of the environment, in line with the green chemistry requirements. This volume is devoted to recent progress in the field of catalytic oxidations using ruthenium, copper, iron, gold, cobalt and other complexes. Products and mechanistic aspects are given special emphasis throughout the book. Books, Science and Nature, Advances in Catalytic Activation of Dioxygen by Metal Complexes Books>Science and Nature, Springer US

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Advances in Catalytic Activation of Dioxygen by Metal Complexes (Catalysis by Metal Complexes) - László I. Simándi
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ISBN: 1402010745

Hardcover, [EAN: 9781402010743], Springer, Springer, Book, [PU: Springer], Springer, The subject of dioxygen activation and homogeneous catalytic oxidation by metal complexes has been i...., 277913, Biochemistry, 277912, Biological Sciences, 57, Science & Nature, 1025612, Subjects, 266239, Books, 278012, Inorganic Chemistry, 278004, Chemistry, 57, Science & Nature, 1025612, Subjects, 266239, Books, 278020, Physical Chemistry, 278004, Chemistry, 57, Science & Nature, 1025612, Subjects, 266239, Books, 278202, Industrial Chemistry, 922268, Chemical, 278115, Engineering & Technology, 57, Science & Nature, 1025612, Subjects, 266239, Books, 564342, Chemistry, 564334, Scientific, Technical & Medical, 1025612, Subjects, 266239, Books

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Advances in Catalytic Activation of Dioxygen by Metal Complexes
Autor:

Simandi, L I, and Simandi, Laszls I (Editor), and Simndi, Lszl I (Editor)

Titel:

Advances in Catalytic Activation of Dioxygen by Metal Complexes

ISBN-Nummer:

1402010745

The catalytic activation of dioxygen continues to attract interest both due to its biological importance and synthetic potential. Metalloenzymes play crucial roles in metabolism by living organisms. The modelling of metalloenzymes by biomimetic metal complexes helps the search for useful oxidation catalysts and the understanding of their mechanisms of operation. Dioxygen is also the oxidant of choice in emission-free technologies aimed at minimising pollution of the environment, in line with the green chemistry requirements. This volume is devoted to recent progress in the field of catalytic oxidations using ruthenium, copper, iron, gold, cobalt and other complexes. Products and mechanistic aspects are given special emphasis throughout the book.

Detailangaben zum Buch - Advances in Catalytic Activation of Dioxygen by Metal Complexes


EAN (ISBN-13): 9781402010743
ISBN (ISBN-10): 1402010745
Gebundene Ausgabe
Erscheinungsjahr: 2003
Herausgeber: Springer-Verlag GmbH
356 Seiten
Gewicht: 0,689 kg
Sprache: eng/Englisch

Buch in der Datenbank seit 26.07.2007 11:18:57
Buch zuletzt gefunden am 20.08.2016 01:54:56
ISBN/EAN: 1402010745

ISBN - alternative Schreibweisen:
1-4020-1074-5, 978-1-4020-1074-3

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