Closed-packed lattice model for polymer solution systems considering the chain length dependence effect: Correlating LLE, VLE, and gel swelling behaviors using identical interaction energy parameters

  • Kim, Joo Wan
  • Bae, Young Chan
Citations

WEB OF SCIENCE

1
Citations

SCOPUS

1

초록

We propose a new Helmholtz energy of mixing equation following the original Flory-Huggins (F-H) closed-packed lattice model. Also, to overcome F-H mean-field approximation, we introduce new universal constants to consider chain length dependence of polymer in solvent and consider specific interactions to describe strongly interacting polymer systems. Our proposed model successfully describes liquid-liquid equilibria (LLE) for binary polymer-solvent systems using identical interaction parameters which do not depend on the polymer molecular weight. We also describe vapor-liquid equilibria (VLE) for polymer/solvent systems and swelling equilibria of thermosensitive hydrogel systems using the same energy parameters obtained from LLE calculations.

키워드

Lattice modelChain length dependencePolymer solutionLIQUID-LIQUID EQUILIBRIACRITICAL SOLUTION TEMPERATURESCLOUD-POINT CURVESR-MER FLUIDSSTATISTICAL THERMODYNAMICSMONOMER STRUCTUREPHASE-DIAGRAMSBINARY-SYSTEMSCOMPRESSIBILITYPOLYSTYRENE
제목
Closed-packed lattice model for polymer solution systems considering the chain length dependence effect: Correlating LLE, VLE, and gel swelling behaviors using identical interaction energy parameters
저자
Kim, Joo WanBae, Young Chan
DOI
10.1016/j.fluid.2010.09.001
발행일
2010-12
유형
Article
저널명
Fluid Phase Equilibria
299
1
페이지
75 ~ 83