Face-controlled chirality induction in octahedral thiacalixarene-based porous coordination cages

Abstract

Nanosized chiral octahedral M32 coordination cages were prepared via self-assembly of sulfonylcalix[4]arene tetranuclear M(II) clusters (M = Co or Ni) with enantiomerically enriched linkers based on tris(dipyrrinato)cobalt(III) complexes, appended with peripheral carboxylic groups. Two pairs of enantiomers of cages were obtained and unambiguously characterized from a structural point of view, using single crystal X-ray diffraction. Chiral-HPLC was used to evidence the enantiomers. In the solid state, the compounds present intrinsic and extrinsic porosity: the intrinsic porosity is linked with the size of the cages, which present an inner diameter of ca. 19 Å. The obtained solid-state supramolecular architectures demonstrated good performances as adsorbents for water and 2-butanol guest molecules.

Graphical abstract: Face-controlled chirality induction in octahedral thiacalixarene-based porous coordination cages

Supplementary files

Article information

Article type
Paper
Submitted
04 Sep 2024
Accepted
26 Nov 2024
First published
09 Dec 2024

Nanoscale, 2025, Advance Article

Face-controlled chirality induction in octahedral thiacalixarene-based porous coordination cages

I. V. Khariushin, A. S. Ovsyannikov, S. A. Baudron, J. S. Ward, A. Kiesilä, K. Rissanen, E. Kalenius, M. Chessé, B. Nowicka, S. E. Solovieva, I. S. Antipin, V. Bulach and S. Ferlay, Nanoscale, 2025, Advance Article , DOI: 10.1039/D4NR03622K

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