Author: | ISBN: | 9783132211810 | |
Publisher: | Thieme | Publication: | November 18, 2015 |
Imprint: | Thieme | Language: | English |
Author: | |
ISBN: | 9783132211810 |
Publisher: | Thieme |
Publication: | November 18, 2015 |
Imprint: | Thieme |
Language: | English |
The rapid pace of evolution in domino, or cascade-based transformations has revolutionized the practice of chemical synthesis for the creation of natural products, designed molecules, and pharmaceuticals.
"Science of Synthesis: Applications of Domino Transformations in Organic Synthesis" explores the topic thoroughly and systematically, serving as the basis for practical applications and future research. The 2-volume set presents the cutting-edge in terms of design, strategy, and experimental procedures, leading to multiple events being accomplished within a single reaction vessel. The content is organized by the core type of reaction used to initiate the event, be it a pericyclic reaction, a metal-mediated transformation, radical chemistry, or an acid-induced cascade among many others.
Volume 1 covers polyene/cation-pi cyclizations, metathesis, radical, and metal-mediated reactions, and non-radical skeletal rearrangements.
The rapid pace of evolution in domino, or cascade-based transformations has revolutionized the practice of chemical synthesis for the creation of natural products, designed molecules, and pharmaceuticals.
"Science of Synthesis: Applications of Domino Transformations in Organic Synthesis" explores the topic thoroughly and systematically, serving as the basis for practical applications and future research. The 2-volume set presents the cutting-edge in terms of design, strategy, and experimental procedures, leading to multiple events being accomplished within a single reaction vessel. The content is organized by the core type of reaction used to initiate the event, be it a pericyclic reaction, a metal-mediated transformation, radical chemistry, or an acid-induced cascade among many others.
Volume 1 covers polyene/cation-pi cyclizations, metathesis, radical, and metal-mediated reactions, and non-radical skeletal rearrangements.