Organic synthesis with lanthanides has experienced enormous growth in the last ten years. Numerous synthetic reactions have been explored by the use of lanthanide reagents, and some of these have become indispensablein modern organic synthesis.
This book describes the remarkable scope and potential of these reagents, addressing this rapidly growing area from a practical point-of-view. The author has summarized synthetically useful and novel organic transformations, emphasizing the characteristic properties of lanthanide reagents. These transformations are concisely and skillfully presented in many schemes and tables, with actual illustrative preparations.
The coverage includes the use of lanthanide metals, the powerful divalent reagents such as samarium (II) iodide, the key trivalent reagents and their particular role as catalysts in selective reductions and cycloadditions, and the tetravalent lanthanides as oxidants.
Organic synthesis with lanthanides has experienced enormous growth in the last ten years. Numerous synthetic reactions have been explored by the use of lanthanide reagents, and some of these have become indispensablein modern organic synthesis.
This book describes the remarkable scope and potential of these reagents, addressing this rapidly growing area from a practical point-of-view. The author has summarized synthetically useful and novel organic transformations, emphasizing the characteristic properties of lanthanide reagents. These transformations are concisely and skillfully presented in many schemes and tables, with actual illustrative preparations.
The coverage includes the use of lanthanide metals, the powerful divalent reagents such as samarium (II) iodide, the key trivalent reagents and their particular role as catalysts in selective reductions and cycloadditions, and the tetravalent lanthanides as oxidants.
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Elsevier Science Publishing Co Inc
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Für höhere Schule und Studium
Für Beruf und Forschung
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Höhe: 229 mm
Breite: 152 mm
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ISBN-13
978-0-12-370722-2 (9780123707222)
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Schweitzer Klassifikation
Alan Katritzky was educated at Oxford and has held faculty positions at Cambridge and East Anglia before he migrated in 1980 to the University of Florida, where he was Kenan Professor and Director for the Institute for Heterocyclic Compounds. During his career he has trained more than 1000 graduate students and post-docs, and lectured and consulted world-wide. He led the team, which produced "Comprehensive Heterocyclic Chemistry? and its sequels, "CHEC-II" and "CHEC-III?, has edited "Advances in Heterocyclic Chemistry, Vols. 1 through 111? and conceived the plan for "Comprehensive Organic Functional Group Transformations?. He founded Arkat-USA, a non-profit organization which publishes "Archive for Organic Chemistry? (ARKIVOC) an electronic journal completely free to authors and readers at (www.arkat-usa.org). Honors include 14 honorary doctorates from 11 countries and membership of foreign membership of the National Academies of Britain, Catalonia, India, Poland, Russia and Slovenia.
Alan Katritzky was educated at Oxford and has held faculty positions at Cambridge and East Anglia before he migrated in 1980 to the University of Florida, where he was Kenan Professor and Director for the Institute for Heterocyclic Compounds. During his career he has trained more than 1000 graduate students and post-docs, and lectured and consulted world-wide. He led the team, which produced "Comprehensive Heterocyclic Chemistry? and its sequels, "CHEC-II" and "CHEC-III?, has edited "Advances in Heterocyclic Chemistry, Vols. 1 through 111? and conceived the plan for "Comprehensive Organic Functional Group Transformations?. He founded Arkat-USA, a non-profit organization which publishes "Archive for Organic Chemistry? (ARKIVOC) an electronic journal completely free to authors and readers at (www.arkat-usa.org). Honors include 14 honorary doctorates from 11 countries and membership of foreign membership of the National Academies of Britain, Catalonia, India, Poland, Russia and Slovenia.
Autor*in
Chiba University
Reihen-Herausgeber
Introduction. General Properties of Lanthanides. The Use of Lanthanide Metals in Synthesis. Divalent Lanthanides. Trivalent Lanthanides. Tetravalent Lanthanides. Index of Compounds and Methods.