Huanjun Kong, Mayte A. Martínez‐Aguirre, Yan Li, Tomoyuki Ikai, Eiji Yashima, Gangamallaiah Velpula, Steven De Feyter, Pierre‐Antoine Albouy, Komivi Akpo, Patrick Brocorens, Roberto Lazzaroni, Laurent Bouteiller, Matthieu Raynal
Abstract Solvent‐solute interactions are utterly important in supramolecular polymers (SPs), yet the high responsivity of SPs to solvent polarity makes it challenging to play on other solvation effects to tune their macroscopic properties in a rational manner. Herein, we report the characterization at various scales of the assembly properties of a C 2 ‐symmetric benzene‐1,3,5‐tricarboxamide monomer with two (1 S )‐methylheptyl moieties and one diphenylphosphino group as lateral chains. Our investigation reveals a highly cooperative structural transition between two SP states, which can exquisitely be tuned by solvents of similar polarities, leading to variation of the transition temperature (T*) over a range of 85 K. The structural transition was detected in 4 pure solvents and 13 toluene/cosolvent mixtures; a fair relationship is determined between T* and the solvent molar volume. The transition is only weakly favored by enthalpy (by ca. 2 kJ.mol −1 at 286 K). However, minimization of the entropic cost leads to a notable increase in the T*. This allows a fine tuning of the thermothickening and catalytic properties of the resulting SPs auguring that solvation, and notably solvation entropy, may constitute an important lever for steering SPs structure and properties.