Vinyl methyl oxazolidinone as reactive diluent to overcome the solubility limitations of highly polar unsaturated polyesters

Author:

Wylezek Maciej12ORCID,Kalinkin Chris13,Gläser Kristin1,Adermann Torben3,García Romero Iván3,D'Andola Giovanni3,Komber Hartmut4ORCID,Lorenz Reinhard1ORCID,Voit Brigitte24ORCID

Affiliation:

1. Department of Chemical Engineering University of Applied Science Münster Steinfurt Germany

2. Organische Chemie der Polymere Technische Universität Dresden Dresden Germany

3. BASF SE Ludwigshafen am Rhein Germany

4. Leibniz‐Institut für Polymerforschung Dresden Dresden Germany

Abstract

AbstractVinyl methyl oxazolidinone (VMOX®) is studied as a new reactive diluent (RD) for highly polar unsaturated polyesters (UPs). Molecules with special structure properties are extensively investigated as components for unsaturated polyester resins (UPRs) and thermosets, particularly for high‐temperature applications. Special diols with a cyclic structure like isosorbide and tricyclodecanedimethanol or special diols with side groups like 2‐methyl‐2‐propyl‐1,3‐propanediol and 2‐ethyl‐2‐butyl‐1,3‐propanediol can provide interesting properties. Bio‐based diols such as isosorbide and 1,3‐butanediol improve the sustainability profile. However, UPs based on such special diols have a higher polarity, limiting their solubility in styrene. This demands a RD, which provides adequate solubility and is suitable for high‐temperature applications. Therefore, our study compares the solubility of highly polar UPs based on special diols in styrene and VMOX®. UPs with different formulations, polarities, and Hansen parameters were synthesized and characterized. The solubility sphere of styrene was determined experimentally with the synthesized UPs. The influence of the special diols on the thermoset properties was investigated in dynamic mechanical analysis measurements. In conclusion, VMOX® as a RD enables full utilization of special diols properties due to the wide solubility window. Moreover, a new class of high‐temperature styrene‐free UP resin was developed.

Publisher

Wiley

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