Solvent-cosolvent attraction is sufficient to induce polymer collapse in good solvent mixtures

Fuente: arXiv
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Autori principali: Garg, Hitesh, Nayar, Divya, Vemparala, Satyavani
Natura: Preprint
Pubblicazione: 2024
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author Garg, Hitesh
Nayar, Divya
Vemparala, Satyavani
author_facet Garg, Hitesh
Nayar, Divya
Vemparala, Satyavani
contents Cononsolvency occurs when two miscible, competing good solvents for a polymer are mixed, resulting in a loss of solubility. In this study, we demonstrate through simulations, supported by theory, that cononsolvency can be driven solely by solvent-cosolvent attraction ($ε_{sc}$). The primary mechanism underlying this behavior is the emergent depletion effect, which is amplified by solvent-cosolvent interactions. The polymer reaches a compact state when the solvent and cosolvent fractions are equal ($x_s = x_c = 0.5$), a finding that aligns with predictions from Flory-Huggins theory and the random phase approximation. We show that this cononsolvency behavior is observed for different cosolvent sizes, provided the cosolvent density remains below the depletion threshold and the sizes of solvent and cosolvent particles are not smaller than the monomer size. Additionally, we investigate the role of temperature and find that cononsolvency weakens as temperature increases, due to a reduction in the depletion effect. Finally, we show that when preferential cosolvent attraction is introduced in this simple model, it leads to cononsolvency driven by bridging interactions, occurring at lower cosolvent fractions ($x_c < 0.5$).
format Preprint
id arxiv_https___arxiv_org_abs_2410_02211
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Solvent-cosolvent attraction is sufficient to induce polymer collapse in good solvent mixtures
Garg, Hitesh
Nayar, Divya
Vemparala, Satyavani
Soft Condensed Matter
Biological Physics
Chemical Physics
Cononsolvency occurs when two miscible, competing good solvents for a polymer are mixed, resulting in a loss of solubility. In this study, we demonstrate through simulations, supported by theory, that cononsolvency can be driven solely by solvent-cosolvent attraction ($ε_{sc}$). The primary mechanism underlying this behavior is the emergent depletion effect, which is amplified by solvent-cosolvent interactions. The polymer reaches a compact state when the solvent and cosolvent fractions are equal ($x_s = x_c = 0.5$), a finding that aligns with predictions from Flory-Huggins theory and the random phase approximation. We show that this cononsolvency behavior is observed for different cosolvent sizes, provided the cosolvent density remains below the depletion threshold and the sizes of solvent and cosolvent particles are not smaller than the monomer size. Additionally, we investigate the role of temperature and find that cononsolvency weakens as temperature increases, due to a reduction in the depletion effect. Finally, we show that when preferential cosolvent attraction is introduced in this simple model, it leads to cononsolvency driven by bridging interactions, occurring at lower cosolvent fractions ($x_c < 0.5$).
title Solvent-cosolvent attraction is sufficient to induce polymer collapse in good solvent mixtures
topic Soft Condensed Matter
Biological Physics
Chemical Physics
url https://arxiv.org/abs/2410.02211