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Updated: Sep 24, 2025

Controlling the Size, Shape and Stability of Supramolecular Polymers in Water
Published on: August 2, 2012
Conformational transition of a non-associative fluorinated amphiphile in aqueous solution. II. Conformational
Marc B Taraban1, Daniel J Deredge1, Margaret E Smith1
1Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland 20 Penn Street Baltimore MD 21201 USA byu@rx.umaryland.edu pwintrod@rx.umaryland.edu +1 410-706-5017 +1 410-706-7514 +1 410-706-6639.
Abstract:
Unlike many known amphiphiles, the fluorinated amphiphilic dendrimer studied in this work demonstrated a concentration-dependent conformational transition rather than micellization or assembly. Hydrophobic and hydrophilic interactions with water were suggested as the most probable driving force of this transition. This assumption was consistent with the observed 19F chemical shift changes of the dendrimer compared to a known micelle-forming fluorinated amphiphile. Since water is an important factor in the process, trends of the concentration-dependent changes in water proton transverse relaxation rate served as an indicator of structural changes and/or supramolecular assembly. The conformational transition process was also confirmed by ion-mobility mass-spectrometry. We suggested that structural features, namely, steric hindrances, prevented the micellization/assembly of the dendrimer of this study. This conclusion might inform the approach to develop novel unconventional amphiphiles.
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