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Calochorturils: Chiral Bowl-Shaped Cavitands Obtained by Anisotropic Tangential Substitution

  • Sadhna Shah
  • , Venkata S.R. Ganga
  • , Yu Xiang Huang
  • , Natalia Fridman
  • , Inbal Tuvi-Arad
  • , Yi Tsu Chan
  • , Ofer Reany
  • , Ehud Keinan

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Substitution of the extended tribenzo-cyclononatriene transforms an achiral cavitand into a chiral host molecule. Calculations of the continuous chirality measure (CCM) predict that tangential substitution induces greater distortion of the unsubstituted bowl-shaped cavitand than radial substitution. We achieved the new cavitands through regioselective synthesis and named them Calochorturils (CTs) after the chiral C3-symmetric Calochortus venustus tulip. Resolving them into optically pure enantiomers using chiral HPLC enabled their characterization by optical rotation and circular dichroism spectroscopy. Their absolute configuration was determined by X-ray crystallography of an enantiomerically pure triply etherified CT with (S)-BINOL. A comparison of CCM calculations for several solid-state CT derivatives with gas-phase models shows satisfactory agreement. The racemization rate constant for the bowl-to-bowl inversion, krac= 7.1 × 10–6s–1, corresponds to an activation free energy barrier of ΔG#= 115.1 kJ mol–1. Notably, the CT skeleton is configurationally more stable than the CTV framework, with a 27 h half-life at 334 K in chloroform, compared with 8 h of CTV. Thus, CT derivatives can be handled in solution at room temperature without a significant loss of optical purity.

Original languageEnglish
Pages (from-to)38443-38451
Number of pages9
JournalJournal of the American Chemical Society
Volume147
Issue number42
DOIs
StatePublished - 22 Oct 2025
Externally publishedYes

ASJC Scopus subject areas

  • Catalysis
  • Biochemistry
  • General Chemistry
  • Colloid and Surface Chemistry

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