Published July 21, 2025 | Version v1
Dataset Open

Research data for "Epoxide-functionalized hyperbranched polyethylene and its applications in functional polymer synthesis and hot lithography photopolymer toughening"

  • 1. ROR icon TU Wien
  • 2. ROR icon University of Chemistry and Technology, Prague

Description

Context and methodology

This dataset was collected during a research project on photopolymers for 3D printing within the framework of a PhD thesis at the Department of Polymers of University of Chemistry and Technology in Prague and at the Institute of Applied Synthetic Chemistry, TU Wien. It provides the raw data of results presented and discussed therein. The data is published within below-referenced publication.

Technical details

The dataset entails the raw data of various analyses collected in an Excel file Raw data figures:
Tab 1: "Figure 3a PhotoDSC": PhotoDSC data obtained during curing of PE-GU formulation.
Tab 2: "Figure 3b RhotoRheo": PhotoRheology data obtained during curing of PE-GU formulation.
Tab 3: "Figure 5a Tensile test": Stress-strain curves obtained during tensile testing of PE-GU, PE-EU and CE matrix formulations.
Tab 4: "Figure 5b DMTA": Dynamic mechanical thermal analysis data obtained during tensile testing of PE-GU, PE-EU and CE matrix formulations.

NMR data are included in zip (.rar) archive as raw FID data which can be opened with community-standard programmes (e.g. MestRe Nova, TopSpin).

Abbreviations

CE matrix: Reference formulation containing cycloaliphatic epoxide 3,4-Epoxycyclohexylmethyl-3',4'-epoxycyclohexane carboxylate
DMTA: Dynamic mechanical thermal analysis
DSC: Differential scanning calorimetry
FID: Free induction decay
NMR: Nuclear magnetic resonance spectroscopy
PE-EU: Cycloaliphatic epoxide formulation containing polyethylene rubber functionalized with ethyl ester groups.
PE-GU: Cycloaliphatic epoxide formulation containing polyethylene rubber functionalized with glycidyl groups.

Files

Files (2.5 MiB)

NameSize
md5:265fe8d788a9ec5b7f83c8bb4ae8f37f
2.3 MiBDownload
md5:030e3f8698424b319a13a8937eac528f
133.1 KiBDownload

Additional details

Related works

Is part of
Publication: 10.1016/j.reactfunctpolym.2025.106425 (DOI)

Funding

Czech Science Foundation
Verifying structure of complex polyolefins GF22-09470L
University of Chemistry and Technology, Prague
Specific university research grant A1_FCHT_2025_001