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Green approaches to asymmetric catalytic synthesis

Nowadays, chirality is widely accepted as an important factor in molecular recognition processes and the biological activity of many pharmaceutical drugs and agrochemicals; this is confirmed by the continuous need for synthetic methods which lead to single or enriched enantiomers of such compounds. By presenting a review of the various and more recently developed approaches for both metal-transition and organocatalysis, this volume describes the development of "greener" asymmetric reactions which preserve stereoselectivity. The author summarizes the impressive amount of research that

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  • "Asymmetric catalytic synthesis"@en
  • "Catalytic asymmetric synthesis"@en

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  • "Nowadays, chirality is widely accepted as an important factor in molecular recognition processes and the biological activity of many pharmaceutical drugs and agrochemicals; this is confirmed by the continuous need for synthetic methods which lead to single or enriched enantiomers of such compounds. By presenting a review of the various and more recently developed approaches for both metal-transition and organocatalysis, this volume describes the development of "greener" asymmetric reactions which preserve stereoselectivity. The author summarizes the impressive amount of research that"@en

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  • "Electronic books"
  • "Electronic books"@en

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  • "Green approaches to asymmetric catalytic synthesis"
  • "Green approaches to asymmetric catalytic synthesis"@en
  • "Green Approaches To Asymmetric Catalytic Synthesis"@en
  • "Green Approaches To Asymmetric Catalytic Synthesis"