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Edyta Hebda

Researcher at Tadeusz Kościuszko University of Technology

Publications -  45
Citations -  689

Edyta Hebda is an academic researcher from Tadeusz Kościuszko University of Technology. The author has contributed to research in topics: Polyurethane & Differential scanning calorimetry. The author has an hindex of 14, co-authored 42 publications receiving 538 citations.

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POSS along the Hard Segments of Polyurethane. Phase Separation and Molecular Dynamics

TL;DR: In this article, a polyurethane system with polyhedral oligomeric silsesquioxanne (POSS) particles chemically bonded along its main chain as nanobuilding blocks is reported.
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Reduced Phase Separation and Slowing of Dynamics in Polyurethanes with Three-Dimensional POSS-Based Cross-Linking Moieties

TL;DR: Microscopy, scattering, spectroscopic, thermal, and dielectric techniques show that the covalent inclusion of the cross-linking particles restricts microphase separation, inhibits the formation of hard-block domains, and decelerates the motional dynamics of the polyurethane backbone.
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Degradative and morphological characterization of POSS modified nanohybrid polyurethane elastomers

TL;DR: In this paper, a series of polyhedral oligomeric silsesquioxane (POSS) modified polyurethane elastomers have been synthesized which incorporates a partially opened POSS-diol cage into the methylene di-isocyanate/poly(tetramethylene) glycol urethane network as a substitute chain extender moiety without the need for an alkyl tether.
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Thermal stability and flammability of polyurethane foams chemically reinforced with POSS

TL;DR: In this paper, the thermal stability and flammability of a novel class of rigid polyurethane foams chemically modified by functionalized 1,2-propanediolisobutyl POSS (PHI-POSS) as a pendant group and octa (3-hydroxy-3-methylbutyldimethylsiloxy) POSS as a chemical cross-link were reported.
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Polyurethane foams chemically reinforced with POSS—Thermal degradation studies

TL;DR: In this article, the thermal degradation of rigid polyurethane foams chemically modified by polyhedral silsesquioxanes was analyzed using hyphenated techniques, coupled with FTIR spectroscopy and quadrupole mass chromatography (QMS).