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Physicochemical characterization of green sodium oleate-based formulations. Part 3. Molecular and collective dynamics in rodlike and wormlike micelles by proton nuclear magnetic resonance relaxation

Academic Article
Publication Date:
2023
abstract:
Hypothesis Sodium oleate (NaOL) self-aggregates in water forming rodlike micelles with different length depending on NaOL concentration; when KCl is added wormlike micelles form, which entangle giving rise to a viscoelastic dispersion. It is expected that aggregates with different size and shape exhibit different internal and overall molecular motions and collective dynamics. Experiments Two low viscosity NaOL/water and two viscoelastic NaOL/KCl/water formulations with different NaOL concentration (0.23 and 0.43 M) were investigated by 1H fast field cycling NMR relaxometry over broad temperature and Larmor frequency ranges, after a first screening by 1H and 13C NMR spectroscopy at high frequency. Findings The analysis of the collected data indicated that fast conformational isomerization and rotation of NaOL about its long molecular axis and lateral diffusion of NaOL around the axis of the cylindrical aggregates are slightly affected by the aggregate shape and length. On the other hand, fluctuations of the local order director are quite different in the fluid and viscoelastic systems, reflecting the shape and size of the aggregates. Quantitative information was obtained on activation energy for fast internal and overall motions, correlation times and activation energy for lateral diffusion, and coherence length for collective order fluctuations.
Iris type:
01.01 Articolo in rivista
Keywords:
13C NMR spectroscopy; 1H FC NMR relaxometry; 1H NMR spectroscopy; Green formulation(s); Lateral diffusion; Order director fluctuations; Reorientational motions; Sodium oleate; Viscoelasticity; Wormlike micelles
List of contributors:
Geppi, Marco; Calucci, Lucia; Borsacchi, Silvia
Authors of the University:
BORSACCHI SILVIA
CALUCCI LUCIA
Handle:
https://iris.cnr.it/handle/20.500.14243/412646
Published in:
JOURNAL OF COLLOID AND INTERFACE SCIENCE (ONLINE)
Journal
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https://www.sciencedirect.com/science/article/pii/S0021979723000139
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