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Model binding experiments with cucurbit[7]uril and p-sulfonatocalix[4]arene support use of explicit solvation term in governing equation for binding equilibria.

Authors :
Eggers, Daryl K.
Brewer, Adam
Cacatian, Kimberly J.
Camat, L. Allison
Castagnoli, Dominic
Chuang, Nina
Chung, Lillian N.
Do, Thanh
Huynh, Emily
Jenpichitkulchai, Thanayuth
Kaur, Anoop
Le, Frank
Ong, Roy
Pham, Duc
Shao, Kevin
Source :
Supramolecular Chemistry; 2022, Vol. 34 Issue 2, p94-104, 11p
Publication Year :
2022

Abstract

The thermodynamics of model host–guest-binding reactions is examined in depth using isothermal titration calorimetry. In conflict with classical thermodynamics, the results indicate that the equilibrium-binding quotient, K, is not a constant for all pairings. This outcome is predicted by an equation for binding equilibria that includes an explicit term for the change in solvation free energy that accompanies the formation of a binary complex. Application of this framework to the experimentally observed concentration dependence of K allows one to obtain the energetic contribution of the solvent, a linked equilibrium denoted here as ΔG<superscript>H2O</superscript>. The estimated values of ΔG<superscript>H2O</superscript> are large and unfavourable for the binding of selected guest molecules to two hosts, cucurbit[7]uril and p-sulfonatocalix[4]arene. Intriguingly, the estimated values of ΔG<superscript>H2O</superscript> are near zero for the binding of two hydrophobic guest molecules to β-cyclodextrin, leading to a thought-provoking discussion on the driving force behind the hydrophobic effect. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10610278
Volume :
34
Issue :
2
Database :
Complementary Index
Journal :
Supramolecular Chemistry
Publication Type :
Academic Journal
Accession number :
173368066
Full Text :
https://doi.org/10.1080/10610278.2023.2254442