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Supramolecular Balance: Using Cooperativity To Amplify Weak Interactions
Author(s) -
Mihaela Roman,
Caroline Cannizzo,
Thomas Pinault,
Benjamin Isare,
Bruno Andrioletti,
Paul van der Schoot,
Laurent Bouteiller
Publication year - 2010
Publication title -
journal of the american chemical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.115
H-Index - 612
eISSN - 1520-5126
pISSN - 0002-7863
DOI - 10.1021/ja105717u
Subject(s) - cooperativity , chemistry , supramolecular chemistry , steric effects , solvation , folding (dsp implementation) , chemical physics , computational chemistry , nanotechnology , combinatorial chemistry , crystal structure , molecule , stereochemistry , crystallography , organic chemistry , biochemistry , materials science , electrical engineering , engineering
Gathering precise knowledge on weak supramolecular interactions is difficult yet is of utmost importance for numerous scientific fields, including catalysis, crystal engineering, ligand binding, and protein folding. We report on a combined theoretical and experimental approach showing that it is possible to vastly improve the sensitivity of current methods to probe weak supramolecular interactions in solution. The concept consists of using a supramolecular platform involving a highly cooperative configurational transition, the perturbation of which (by the modification of the molecular building blocks) can be monitored in a temperature scanning experiment. We tested this concept with a particular bisurea platform, and our first results show that it is possible to detect the presence of interaction differences as low as 60 J/mol, which may be due to steric repulsion between vinyl and alkyl groups or may be the result of solvation effects.

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