Issue 66, 2021

Recognition of hydrophilic molecules in deep cavitand hosts with water-mediated hydrogen bonds

Abstract

We describe new container host molecules – deep cavitands with benzimidazole walls and ionic feet – to recognize highly hydrophilic guest molecules in water. The aromatic surfaces of the cavity recognize hydrophobic portions of the guest while bound water molecules mediate hydrogen bonding in the complex. Spectroscopic (NMR) evidence indicates slow in/out exchange on the chemical shift timescale and thermodynamic (ITC) methods show large association constants (Ka up to 6 × 104 M−1) for complexation of small, water-soluble molecules such as THF and dioxane. Quantum chemical calculations are employed to optimize the host–guest geometries and elucidate the hydrogen bonding patterns responsible for the binding.

Graphical abstract: Recognition of hydrophilic molecules in deep cavitand hosts with water-mediated hydrogen bonds

Supplementary files

Article information

Article type
Communication
Submitted
12 May 2021
Accepted
15 Jul 2021
First published
17 Jul 2021

Chem. Commun., 2021,57, 8147-8150

Recognition of hydrophilic molecules in deep cavitand hosts with water-mediated hydrogen bonds

H. Guan, Y. Zhu, J. Peters, O. Brea, F. Himo, J. Rebek and Y. Yu, Chem. Commun., 2021, 57, 8147 DOI: 10.1039/D1CC02505H

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