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Quantitative study on solubility parameters and related thermodynamic parameters of pva with different alcoholysis degrees

  • Siqi Chen
  • , Hao Yang
  • , Kui Huang
  • , Xiaolong Ge
  • , Hanpeng Yao
  • , Junxiang Tang
  • , Junxue Ren
  • , Shixue Ren*
  • , Yanli Ma
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

In recent years, inverse gas chromatography (IGC) and molecular dynamics simulation methods have been used to characterize the solubility parameters and surface parameters of polymers, which can provide quantitative reference for the further study of the surface and interface compatibility of polymer components in the future. In this paper, the solubility parameters and surface parameters of two kinds of common alcoholysis, PVA88 and PVA99, are studied by using the IGC method. The accuracy of the solubility parameters obtained by the IGC experiment is verified by molecular dynamics simulation. On the basis of this, the influence of repeated units of polyvinyl alcohol (PVA) on solubility parameters is studied, so as to determine the appropriate chain length of the PVA for simulation verification calculation. The results show that the solubility parameters are not much different when the PVA chain length is 30 and above; the numerical trends of the solubility parameters of PVA88 and PVA99 at room temperature are the same as the results of molecular dynamics simulation; the dispersive surface energy γs d and the specific surface energy γs sp are scattered with the temperature distribution and have a small dependence on temperature. On the whole, the surface energy of PVA99 with a higher alcoholysis degree is higher than that of PVA88 with a lower alcoholysis degree. The surface specific adsorption free energy (∆Gsp) indicates that both PVA88 and PVA99 are amphoteric meta-acid materials, and the acidity of PVA99 is stronger.

Original languageEnglish
Article number3778
JournalPolymers
Volume13
Issue number21
DOIs
StatePublished - 1 Nov 2021

Keywords

  • Alcoholicity
  • IGC
  • Molecular dynamics simulation
  • PVA
  • Solubility parameter
  • Surface properties

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