More Dead Ends and Detours: En Route to Successful Total Synthesis

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Description Success comes in many forms and in synthesis it can be a failure that results in their ultimate successful solutions. This long-awaited sequel to "Dead Ends and Detours" retains the proven concept while featuring over 20 new case studies of failed strategies and their successful solutions in natural product total synthesis.

Additionally, computational models are used to discuss the problem in much more detail and to provide readers with additional information not found in the primary literature.

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The topics range from classic synthetic reactions e. Diels Alder reaction , metal-mediated coupling reactions, metathesis, and asymmetric catalysis to the importance of protecting and activating groups. This book will benefit not only graduate students in organic chemistry but also advanced researchers as they gain knowledge derived from the step-by-step analysis of mistakes made in the past and, thus be able to improve their own chemical reaction planning.

With its coverage of the most commonly applied reaction types, the book perfectly complements its predecessor, which focuses on general aspects, such as reactivity and selectivity. Auflage Illustrations note 40 SW-Abb.

More Dead Ends and Detours: En Route to Successful Total Synthesis

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Caesar's Last Breath Sam Kean. Chemistry 3 Andrew Burrows. SearchWorks Catalog Stanford Libraries. More dead ends and detours [electronic resource] : en route to successful total synthesis.


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Responsibility Miguel A. Physical description 1 online resource. Online Available online. More options. Find it at other libraries via WorldCat Limited preview. Bibliography Includes bibliographical references and index.

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Furthermore, computational models are used to discuss the problem in much more detail and to provide readers with additional information not found in the primary literature. The topics include classic synthetic reactions, metal-mediated coupling reactions, metathesis, asymmetric catalysis, and the importance of protecting and activating groups. As a result, both graduate students in organic chemistry and advanced researchers will benefit from the knowledge derived from the step-by-step analysis of mistakes made in the past and, thus be able to improve their own chemical reaction planning.

With its coverage of the most commonly applied reaction types, the book perfectly complements its predecessor, which focuses on general aspects, thus making it attractive to former and prospective readers.