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Phase Separation and Gelation in Solutions and Blends of Heteroassociative Polymers

Publication ,  Journal Article
Danielsen, SPO; Semenov, AN; Rubinstein, M
Published in: Macromolecules
July 25, 2023

An equilibrium statistical mechanical theory for the formation of reversible networks in two-component solutions of associative polymers is presented to account for the phase behavior due to hydrogen-bonding, metal-ligand, electrostatic, or other pairwise heterotypic associative interactions. We derive explicit analytical expressions for the binding statistics, gelation condition, and free energy, in which we consider polymers of types A and B with many associating groups per chain and consider only A-B association between the groups. The free energy is approximated at the mean-field level, considering overlapping polymer chains with an ideal gas of “stickers” capable of intermolecular association. It is shown that the number of associations is maximized at stoichiometric conditions between A and B associative groups. Accordingly, homogeneous networks are most easily formed near stoichiometric conditions between A and B associative groups, resulting in a re-entrant sol-gel-sol transition as the overall composition is altered. Association and reversible network formation are found to be accompanied by a tendency for phase separation. These results demonstrate that reversibly associating polymers have a large parameter space in terms of molecular design, binding energy, and mixture compositions. Our predictions are expected to be useful in the rational design of interacting polymer mixtures and the formation of reversible networks.

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Published In

Macromolecules

DOI

EISSN

1520-5835

ISSN

0024-9297

Publication Date

July 25, 2023

Volume

56

Issue

14

Start / End Page

5661 / 5677

Related Subject Headings

  • Polymers
  • 40 Engineering
  • 34 Chemical sciences
  • 09 Engineering
  • 03 Chemical Sciences
 

Citation

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Danielsen, S. P. O., Semenov, A. N., & Rubinstein, M. (2023). Phase Separation and Gelation in Solutions and Blends of Heteroassociative Polymers. Macromolecules, 56(14), 5661–5677. https://doi.org/10.1021/acs.macromol.3c00854
Danielsen, S. P. O., A. N. Semenov, and M. Rubinstein. “Phase Separation and Gelation in Solutions and Blends of Heteroassociative Polymers.” Macromolecules 56, no. 14 (July 25, 2023): 5661–77. https://doi.org/10.1021/acs.macromol.3c00854.
Danielsen SPO, Semenov AN, Rubinstein M. Phase Separation and Gelation in Solutions and Blends of Heteroassociative Polymers. Macromolecules. 2023 Jul 25;56(14):5661–77.
Danielsen, S. P. O., et al. “Phase Separation and Gelation in Solutions and Blends of Heteroassociative Polymers.” Macromolecules, vol. 56, no. 14, July 2023, pp. 5661–77. Scopus, doi:10.1021/acs.macromol.3c00854.
Danielsen SPO, Semenov AN, Rubinstein M. Phase Separation and Gelation in Solutions and Blends of Heteroassociative Polymers. Macromolecules. 2023 Jul 25;56(14):5661–5677.
Journal cover image

Published In

Macromolecules

DOI

EISSN

1520-5835

ISSN

0024-9297

Publication Date

July 25, 2023

Volume

56

Issue

14

Start / End Page

5661 / 5677

Related Subject Headings

  • Polymers
  • 40 Engineering
  • 34 Chemical sciences
  • 09 Engineering
  • 03 Chemical Sciences