Authors
Barbara Sechi, Alessandro Dessì, Roberto Dallocchio, Nutsa Tsetskhladze, Bezhan Chankvetadze, Mireia Pérez-Baeza, Sergio Cossu, Giorgi Jibuti, Victor Mamane, Paola Peluso
Publication date
2023/10/16
Journal
Analytica Chimica Acta
Volume
1278
Pages
341725
Publisher
Elsevier
Description
Background
Highly ordered chiral secondary structures as well as multiple (tunable) recognition sites are the keys to success of polysaccharide carbamate-based chiral selectors in enantioseparation science. Hydrogen bonds (HBs), dipole-dipole, and π-π interactions are classically considered the most frequent noncovalent interactions underlying enantioselective recognition with these chiral selectors. Very recently, halogen, chalcogen and π-hole bonds were also identified as interactions working in polysaccharide carbamate-based selectors to promote enantiomer distinction. On the contrary, the function of dispersion interactions in this field was not explored so far.
Results
The enantioseparation of chiral ferrocenes featuring chiral axis or chiral plane as stereogenic elements was performed by comparing five polysaccharide carbamate-based chiral columns, with the aim to identify enantioseparation outcomes that …
Total citations
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