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[L914.Ebook] PDF Download Separation of Enantiomers: Synthetic MethodsFrom Wiley-VCH

PDF Download Separation of Enantiomers: Synthetic MethodsFrom Wiley-VCH

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Separation of Enantiomers: Synthetic MethodsFrom Wiley-VCH

Separation of Enantiomers: Synthetic MethodsFrom Wiley-VCH



Separation of Enantiomers: Synthetic MethodsFrom Wiley-VCH

PDF Download Separation of Enantiomers: Synthetic MethodsFrom Wiley-VCH

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Separation of Enantiomers: Synthetic MethodsFrom Wiley-VCH

In one handy volume this handbook summarizes the most common synthetic methods for the separation of racemic mixtures, allowing an easy comparison of the different strategies described in the literature.
Alongside classical methods, the authors also consider kinetic resolutions, dynamic kinetic resolutions, divergent reactions of a racemic mixture, and a number of "neglected" cases not covered elsewhere, such as the use of circularly polarized light, polymerizations, "ripening" processes, dynamic combinatorial chemistry, and several thermodynamic processes.
The result is a thorough introduction to the field plus a long-needed, up-to-date overview of the chemical, biological, and physical methods and their applications. Newcomers to the field, students as well as experienced synthetic chemists will benefit from the highly didactic presentation: Every method is presented in detail, from relatively simple separation problems to advanced complex resolution methods.

  • Sales Rank: #4233384 in Books
  • Published on: 2014-07-21
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.89" h x .80" w x 6.90" l, 1.72 pounds
  • Binding: Hardcover
  • 312 pages

From the Back Cover
In one volume this book summarizes the most common synthetic methods for the separation of enantiomers, allowing an easy comparison of the different strategies described in the literature.

Alongside classical and reagent-based methods, the authors consider kinetic resolutions, dynamic kinetic resolutions, divergent reactions of racemic mixtures, and enzymatic examples of such processes, as well as a number of "neglected" cases not previously brought together.

The result is a thorough introduction to the field plus a long-needed overview of the relevant chemical, biological, and physical methods and their applications. Newcomers to the field, students as well as experienced synthetic chemists will benefit from the highly didactic presentation: Every method is presented in detail, from relatively simple separation problems to advanced synthetic resolution methods.

About the Author
An Associate Professor at The University of Sydney's School of Chemistry, Matthew Todd gained his BA and PhD from Cambridge University, UK, where he later became a Fellow in Chemistry. Prior to taking up his current position, he was a Wellcome Trust postdoctoral fellow at the University of California, Berkeley, USA, from 1999 to 2000, and then became a lecturer in organic chemistry at the Department of Chemistry, Queen Mary, University of London from 2001 to 2005. Prof. Todd's research group is investigating synthetic methodology, responsive metal complexes, and asymmetric catalysis. He has received awards for his work in open science, most notably his creation of the Open Source Malaria consortium that is trialling a new model of drug discovery.

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