Microscopic and Spectroscopic Study on Phase Separation in Highly Crosslinked Biobased Polyurethane Thermosets

Author:

Müller Sabrina123ORCID,Allnoch Dominik4ORCID,Ege Alexander2,Rebner Karsten1ORCID,Chassé Thomas3ORCID,Lorenz Günter1ORCID

Affiliation:

1. Process Analysis and Technology (PA&T) Reutlingen University Alteburgstr. 150 72762 Reutlingen Germany

2. RAMPF Tooling Solutions GmbH & Co. KG Robert-Bosch-Str. 8–10 72661 Grafenberg Germany

3. Institute of Physical and Theoretical Chemistry University of Tübingen Auf der Morgenstelle 18 72076 Tübingen Germany

4. Gigahertz Optik GmbH An der Kälberweide 12 82299 Türkenfeld Germany

Abstract

AbstractIn this study a biobased polyurethane (PU) thermoset is investigated due to its turbidity. In contrary to the expectations, the turbidity increases with a higher amount of a low molecular weight crosslinker. Morphological aspects are investigated with SEM imaging and measurement of the effective scattering coefficient μ’s. FTIR spectroscopy is applied to study the influence of the chemical structure. This is combined with multivariate data analysis to identify the relevant peaks. SEM images show spherical precipitations with increasing turbidity and a simultaneous increase in the μ’s values. FTIR analysis shows a significant amount of unreacted isocyanate‐(NCO)groups and a low level of hydrogen bonding. No formation of typical hard and soft segments is detectable. Therefore, it can be concluded that the increase in polarity differences with increasing crosslinker amount disabled the mixture of the polyol and isocyanate components, resulting in the precipitation of the isocyanate. At the same time, the low molecular weight crosslinker (~200 g mol−1) can react with the NCO quickly, reducing the mobility of the polymer chain, with remaining, non‐reacted isocyanate. A proof for the correlation of the differences in the FTIR and the μ’s values was found by a regression analysis with an R2 of 0.94.

Publisher

Wiley

Reference54 articles.

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2. M. Ionescu Chemistry and Technology of Polyols for Polyurethanes; Smithers Rapra 2005.

3. Polyurethane types, synthesis and applications – a review

4. Polyurethane Market Size Share & Trends Analysis Report By Product (Rigid Foa Flexible Foam) By End-use (Electronics & Appliances Packaging) By Region and Segment Forecasts 2023–2030: online 2023.

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