- By:
- Neu, Jennifer N; Isbill, Sara B; Dwyer, Derek B; Damron, Joshua T; Miskowiec, Andrew J; Niedziela, Jennifer L
- Journal Name:
- Chemistry of Materials
- Page Number:
- 9037-9047
- Volume:
- 37
- Issue Number:
- 22
- Publication Date:
- June 26, 2026
- View DOI Listing:
- https://doi.org/10.1021/acs.chemmater.5c00723
Abstract
Diglycidyl ether of bisphenol F (DGEBF) is a common industrial epoxy resin, desired for its possible replacement of the bisphenol A (BPA) analogue DGEBA due to potential health hazards of BPA. During curing, crystallization of the DGEBF resin can cause inaccurate resin-to-hardener ratios, resulting in incomplete crosslinking; therefore, understanding the crystallization of DGEBF is important for proper industrial control of the material. In this work, we utilized a combination of single-crystal x-ray diffraction, Raman spectroscopy, and 1H-NMR to investigate the crystallization of DGEBF. We observed crystallization of two DGEBF regioisomers: ortho-ortho’-DGEBF and ortho-para’-DGEBF, and report their crystal structures. Notably, para-para’-DGEBF crystallization is not observed, indicating crystallization of this regioisomer does not occur under ambient conditions. Density functional theory calculations were performed to describe the phonon modes of the ortho-ortho’- and ortho-para’-DGEBF structures, corroborating Raman signatures for the respective isomers. Using a phonon mode analysis, we identify the presence of three specific optical vibrational modes at 631.3, 344.1, and 345.6 cm-1 that are unique to the para monomer. This work offers insights into the crystallization behavior of DGEBF resins under ambient conditions and may inform potential industrial application of this material.