Issue 47, 2023

Controlled oligomeric guest stacking by cucurbiturils in water

Abstract

Previously, we reported a guest molecule containing a viologen (V), a phenylene (P) and an imidazole (I) fragment (VPI) forming a host : guest 2 : 2 complex with cucurbit[8]uril (CB[8]) and an unprecedented 2 : 3 complex with cucurbit[10]uril (CB[10]). To better address the structural features required to form these complexes, two VPI analogues were designed and synthesized: the first with a tolyl (T) group grafted on the V part (T-VPI) and the second with a naphthalene (N) fused on the imidazole (I) part (VPI-N). While VPI-N afforded a discrete well-defined 2 : 2 complex with CB[8] and a 2 : 3 complex with CB[10], T-VPI organized also as a 2 : 2 complex with CB[8] but no well-defined complex was obtained with CB[10]. These complexes were studied by NMR spectroscopy, notably DOSY, which allowed us to estimate binding constants for 2 : 2 complex formation with CB[8], pointing to more stable 2 : 2 complexes with more hydrophobic guests. UV-vis and fluorescence spectroscopy confirmed complex formation, suggesting host-stabilized charge-transfer interactions. Therefore, the simple addition of CB[8] or CB[10] enabled us to control the level of guest stacking (dimer or trimer) using relevant pairs of synthetic hosts through spontaneous host : guest quaternary or quinary self-assembly.

Graphical abstract: Controlled oligomeric guest stacking by cucurbiturils in water

Supplementary files

Article information

Article type
Paper
Submitted
22 Oct 2023
Accepted
14 Nov 2023
First published
20 Nov 2023

Org. Biomol. Chem., 2023,21, 9433-9442

Controlled oligomeric guest stacking by cucurbiturils in water

F. Liu, A. Kriat, R. Rosas, D. Bergé-Lefranc, D. Gigmes, S. Pascal, O. Siri, S. Liu, A. Kermagoret and D. Bardelang, Org. Biomol. Chem., 2023, 21, 9433 DOI: 10.1039/D3OB01723K

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