Probing Oppositely Charged Surfactant and Copolymer Interactions by Isothermal Titration Microcalorimetry
1
Matière et Systèmes Complexes, UMR 7057 CNRS Université Denis Diderot Paris-VII, Bâtiment Condorcet, 10 rue Alice Domon et Léonie Duquet, 75205 Paris, France
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Publication type: Journal Article
Publication date: 2010-06-17
scimago Q1
wos Q2
SJR: 0.763
CiteScore: 6.0
Impact factor: 3.9
ISSN: 07437463, 15205827
PubMed ID:
20557117
Spectroscopy
Electrochemistry
Condensed Matter Physics
General Materials Science
Surfaces and Interfaces
Abstract
The complexation between charge-neutral block copolymers and oppositely charged surfactants was investigated by light scattering experiments and by isothermal titration calorimetry (ITC). The copolymer was poly(sodium acrylate)-b-poly(acrylamide) and the surfactant dodecyltrimethylammonium bromide (DTAB). In a previous report, we had shown that the copolymers and the surfactants coassembled spontaneously into colloidal complexes. Depending on the charge ratio, the complexes were either single surfactant micelles decorated by copolymers or core−shell hierarchical structures. ITC was performed in order to investigate the thermodynamics of the complex formation. Titrations of copolymers by surfactants and of surfactants by copolymers revealed that the electrostatic coassembly was an endothermic reaction, suggesting a process dominated by the entropy of the counterions. Here, we found that the thermodynamic quantities associated with the reaction depended on the mixing order. When surfactants were added stepwise to copolymers, the titration was associated with the formation of single micelles decorated by a unique polymer. Above a critical charge ratio, the micelles rearranged themselves into 100 nm colloidal complexes in a collective process which displayed the following features: (i) the process was very slow as compared to the time scale of Brownian diffusion, (ii) the thermodynamic signature was a endothermic peak, and (iii) the stoichiometry between the positive and negative charges was modified from n = 0.48 (single micelles) to 0.75 (core−shell complexes). When copolymers were added stepwise to surfactants, the titration resulted in the formation of the core−shell aggregates only. In both experiments, the amount of polyelectrolytes needed for complex formation exceeded the number required to compensate the net micellar charge, confirming the evidence of overcharging in the complex formation.
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Courtois J., Berret J. Probing Oppositely Charged Surfactant and Copolymer Interactions by Isothermal Titration Microcalorimetry // Langmuir. 2010. Vol. 26. No. 14. pp. 11750-11758.
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Courtois J., Berret J. Probing Oppositely Charged Surfactant and Copolymer Interactions by Isothermal Titration Microcalorimetry // Langmuir. 2010. Vol. 26. No. 14. pp. 11750-11758.
Cite this
RIS
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TY - JOUR
DO - 10.1021/la101475x
UR - https://doi.org/10.1021/la101475x
TI - Probing Oppositely Charged Surfactant and Copolymer Interactions by Isothermal Titration Microcalorimetry
T2 - Langmuir
AU - Courtois, J.
AU - Berret, Jean‐Francois
PY - 2010
DA - 2010/06/17
PB - American Chemical Society (ACS)
SP - 11750-11758
IS - 14
VL - 26
PMID - 20557117
SN - 0743-7463
SN - 1520-5827
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2010_Courtois,
author = {J. Courtois and Jean‐Francois Berret},
title = {Probing Oppositely Charged Surfactant and Copolymer Interactions by Isothermal Titration Microcalorimetry},
journal = {Langmuir},
year = {2010},
volume = {26},
publisher = {American Chemical Society (ACS)},
month = {jun},
url = {https://doi.org/10.1021/la101475x},
number = {14},
pages = {11750--11758},
doi = {10.1021/la101475x}
}
Cite this
MLA
Copy
Courtois, J., and Jean‐Francois Berret. “Probing Oppositely Charged Surfactant and Copolymer Interactions by Isothermal Titration Microcalorimetry.” Langmuir, vol. 26, no. 14, Jun. 2010, pp. 11750-11758. https://doi.org/10.1021/la101475x.