Chiral molecules are molecules that come in left and right handed forms - they are mirror images of each other and behave differently in the body. This important book show chemists how to prepare chiral molecules to get the desired form. Presents an overview of the chiral auxiliaries, reagents and catalysts used in synthesis. Covers underlying principles.
Chiral molecules are molecules that come in left and right handed forms - they are mirror images of each other and behave differently in the body. This important book show chemists how to prepare chiral molecules to get the desired form. Presents an overview of the chiral auxiliaries, reagents and catalysts used in synthesis. Covers underlying principles.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Jacqueline Seyden-Penne, PhD, is Emeritus Director of Research at CNRS. From 1972 to 1991, she taught postgraduate organic chemistry at Orsay University in Paris, and she served as the head of a CNRS Research Unit at Orsay from 1983 to 1991. She has published more than 200 research papers in international journals and was scientific editor of the Bulletin de la Societe; Chimique de France and the Journal of Chemical Research. Dr. Seyden-Penne is an acknowledged international authority on carbanions and selective stereochemical methods in organic synthesis.
Inhaltsangabe
Enantiomerically Pure Chiral Auxiliaries. Chiral Reagents. Chiral Catalysis and Catalysts Bearing Chiral Ligands. Asymmetric Deprotonations and Protonations. Alkylations and Related Reactions. Additions to C=O and C=N Double Bonds. Additions to Carbon-Carbon Double Bonds. Additions to Double Bonds Bearing Heteroatoms; Oxidations of Sulfides and Selenides. Cycloadditions. Sigmatropic Rearrangements. Transition Metal Catalyzed Reactions. References. Index.
Enantiomerically Pure Chiral Auxiliaries. Chiral Reagents. Chiral Catalysis and Catalysts Bearing Chiral Ligands. Asymmetric Deprotonations and Protonations. Alkylations and Related Reactions. Additions to C=O and C=N Double Bonds. Additions to Carbon-Carbon Double Bonds. Additions to Double Bonds Bearing Heteroatoms; Oxidations of Sulfides and Selenides. Cycloadditions. Sigmatropic Rearrangements. Transition Metal Catalyzed Reactions. References. Index.
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