Sprache: Englisch
Verlag: Royal Society of Chemistry RSC, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
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Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
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Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
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Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
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Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
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Verlag: Royal Society of Chemistry, 2009
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Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
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Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
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Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
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ISBN 10: 0854041753 ISBN 13: 9780854041756
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In den WarenkorbHardback. Zustand: New. Designing artificial systems with catalytic efficiencies to rival those of natural enzymes is one of the great challenges facing science today. Our current level of understanding fails the basic, practical test - designing and making artificial systems with catalytic efficiencies to rival those of natural enzymes. Chemists and bio-scientists are well aware of this problem, and "artificial enzymes" have been a "hot topic" for many years. However, until now, there has been no book devoted specifically to this subject. This is the first book to provide a critical introduction to, and overview of, this exciting area. It is aimed at students and more senior researchers with specialist or general interests in the field. The book starts with a systematic overview of the most important properties of natural enzymes, with special emphasis on mechanisms and efficiency of catalysis. This is followed by a summary of the mechanisms involved in the major classes of reaction they catalyze, and spells out the logical progression from simple mechanistic models for particular reactions to the first, rudimentary artificial enzymes catalyzing them. Catalytic efficiency is the key criterion for inclusion. An analysis of the strengths and limitations of the classical design-based approach to catalysis by enzyme mimics leads on to a discussion of recent advances which use selection methods coupled with iterative techniques for creating and improving catalysts by natural methods. The comparison of natural and artificial catalysts requires a quantitative understanding based on the interpretation of kinetic measurements. Key skills in data interpretation are introduced in a guided approach that connects the formal treatment of kinetic measurements with their chemical and biological interpretation.
Sprache: Englisch
Verlag: ROYAL SOCIETY OF CHEMISTRY, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
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In den WarenkorbGebunden. Zustand: New. This introduction to the exciting area of artificial enzymes is suitable for students and more senior researchers.Über den AutorrnrnAnthony J. Kirby is Professor (Emeritus) of Bioorganic Chemistry at the University of Cambridge. He has .
Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
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Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
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Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
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Sprache: Englisch
Verlag: Royal Society of Chemistry, 2009
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Sprache: Englisch
Verlag: Royal Society Of Chemistry Okt 2009, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
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Buch. Zustand: Neu. Neuware - Enzymes are the (impeccably green) catalysts that make the Chemistry of Life run smoothly and efficiently, and understanding how they work has been a major challenge for Biological Science for many years. Despite tremendous progress our understanding still fails the ultimate, practical test - of designing and making artificial systems with catalytic efficiencies to rival those of natural enzymes. 'Artificial enzymes' has been a hot topic for many years, but until now no textbook has been devoted specifically to this subject. From Enzyme Models to Model Enzymes is the first to provide a critical introduction to, and overview of, this exciting area. It is aimed at both students and more senior researchers with interests in the field.This book provides a convenient entry point into the chemistry for the biochemist and molecular biologist, and for the chemist an entrÚe into the biological methods that are of rapidly growing importance in this and a number of other topical areas.
Sprache: Englisch
Verlag: Royal Society of Chemistry, GB, 2009
ISBN 10: 0854041753 ISBN 13: 9780854041756
Anbieter: Rarewaves.com UK, London, Vereinigtes Königreich
EUR 224,63
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In den WarenkorbHardback. Zustand: New. Designing artificial systems with catalytic efficiencies to rival those of natural enzymes is one of the great challenges facing science today. Our current level of understanding fails the basic, practical test - designing and making artificial systems with catalytic efficiencies to rival those of natural enzymes. Chemists and bio-scientists are well aware of this problem, and "artificial enzymes" have been a "hot topic" for many years. However, until now, there has been no book devoted specifically to this subject. This is the first book to provide a critical introduction to, and overview of, this exciting area. It is aimed at students and more senior researchers with specialist or general interests in the field. The book starts with a systematic overview of the most important properties of natural enzymes, with special emphasis on mechanisms and efficiency of catalysis. This is followed by a summary of the mechanisms involved in the major classes of reaction they catalyze, and spells out the logical progression from simple mechanistic models for particular reactions to the first, rudimentary artificial enzymes catalyzing them. Catalytic efficiency is the key criterion for inclusion. An analysis of the strengths and limitations of the classical design-based approach to catalysis by enzyme mimics leads on to a discussion of recent advances which use selection methods coupled with iterative techniques for creating and improving catalysts by natural methods. The comparison of natural and artificial catalysts requires a quantitative understanding based on the interpretation of kinetic measurements. Key skills in data interpretation are introduced in a guided approach that connects the formal treatment of kinetic measurements with their chemical and biological interpretation.