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June 2, 2026Macromolecular Chemistry and Physics0 citations

The Impact of Polyethersulfone Hydroxyl End Groups on the Properties of Epoxy Resin

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SPStepan V. PoluninIGI. Yu. GorbunovaDKDarya A. Konstantinova

Key Points

  • This research aims to understand how hydroxyl end groups in polyethersulfone affect the structure and properties of epoxy resin.
  • Investigated epoxy resin with and without hydroxyl end groups in polyethersulfone.
  • Utilized optical interferometry to assess phase equilibria during curing processes.
  • Analyzed crosslink density and activation energy changes upon curing with 4,4'-diaminodiphenylsulfone.
  • Curing process shows a reduced activation energy by 25 kJ·mol−1 with hydroxyl end groups present.
  • Determined glass transition temperatures for epoxy polymers with open and blocked hydroxyl end groups.
  • Established a lower critical solution temperature of 110°C and 140°C for PESU with open and blocked end groups, respectively.

Abstract

ABSTRACT The work presents a comprehensive study of the influence of polyethersulfone (PESU) with and without hydroxyl end groups on the structure and properties of epoxy resin in its initial state and upon its curing with 4,4'‐diaminodiphenylsulfone. The presence of hydroxyl end groups in the thermoplastic results in two effects: an improved crosslink density and a reduced activation energy for the initial curing stage by 25 kJ·mol −1 . The glass transition temperature has been determined for epoxy polymers that contain polyethersulfone with both open and blocked hydroxyl end groups. Phase equilibria in the initial systems and during the curing process were investigated via optical interferometry. It has been established that the systems are characterized by amorphous stratification diagrams, with a lower critical solution temperature of 110°C or 140°C for PESU with open and with blocked end groups, respectively. Curing with 4,4'‐diaminodiphenylsulfon at 180°C leads to the formation of homogeneous systems. The data obtained in this study will be useful for developers of composite binders and technologists working with high‐temperature compounds that exhibit predictable properties due to their homogeneous structure in the cured state.

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Cite This Study

Polunin et al. (2026) studied this question.

synapsesocial.com/papers/6a1e734530b38c64201b688ahttps://doi.org/10.1002/macp.70273
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