The sigma-hole interaction represents a noncovalent interaction between atoms with sigma-hole(s)on their surface (such as halogens and chalcogens) and negative sites. Over the last decade, significantdevelopments have emerged in applications where the sigma-hole interaction was demonstrated to play akey role in the control over chirality. The aim of this review is to give a comprehensive overview of thecurrent advancements in the use of sigma-hole interactions in stereoselective processes, such as formationof chiral supramolecular assemblies, separation of enantiomers, enantioselective complexation andasymmetric catalysis.

Stereoselective Processes Based on sigma-Hole Interactions

Paola Peluso
;
2022

Abstract

The sigma-hole interaction represents a noncovalent interaction between atoms with sigma-hole(s)on their surface (such as halogens and chalcogens) and negative sites. Over the last decade, significantdevelopments have emerged in applications where the sigma-hole interaction was demonstrated to play akey role in the control over chirality. The aim of this review is to give a comprehensive overview of thecurrent advancements in the use of sigma-hole interactions in stereoselective processes, such as formationof chiral supramolecular assemblies, separation of enantiomers, enantioselective complexation andasymmetric catalysis.
2022
Istituto di Chimica Biomolecolare - ICB - Sede Secondaria Sassari
chalcogen bond
enantioselectivity
enantioseparation
halogen bond
noncovalent interaction
organocatalysis
recognition
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/412899
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