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DOI: 10.1055/s-2007-980385
Silicon-Stereogenic Silanes in Asymmetric Catalysis
Publication History
Received
22 January 2007
Publication Date:
25 June 2007 (online)


Abstract
The exploitation of chirality at silicon in asymmetric catalysis is a challenging task. Silicon-stereogenic silanes were initially utilized to elucidate the stereochemical course of substitution at silicon. These mechanistic investigations are to be seen alongside a handful of synthetic transformations with covalently bound silicon as the stereoinducer. While in these substrate-controlled reactions the asymmetrically substituted silicon functions as a chiral auxiliary, reagent-controlled processes have remained elusive. This account summarizes the aimed design of silicon-stereogenic silanes and their introduction to stereoselective synthesis as chiral reagents.
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1 Initial Reflections
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2 Design of Silicon-Stereogenic Silanes
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3 Preparation of Silicon-Stereogenic Silanes
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4 Enantiospecific Reductive Metalation of Chlorosilanes
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5 Enantiospecific σ-Bond Metathesis of Silanes with Transition-Metal Alkyls: Hydrosilylation of Prochiral Alkenes
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6 Enantiospecific σ-Bond Metathesis of Silanes with Transition-Metal Alkoxides: Dehydrogenative Silicon-Oxygen Coupling of Chiral Alcohols
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7 Final Thoughts
Key words
asymmetric catalysis - reductive metalations - hydrosilylations - kinetic resolution - silicon