To realize the commercialization of sustainable materials, new polymers must be generated and systematically evaluated for material characteristics and end-of-life treatment. Polyester polyols made from renewable monomers have found limited adoption in thermoplastic polyurethane (TPU) applications, and their broad adoption in manufacturing may be possible with a more detailed understanding of their structure and properties. To this end, we prepared a series of bio-based crystalline and amorphous polyester polyols utilizing azelaic acid and varying branched or non-branched diols. The prepared polyols showed viscosities in the range of 504–781 cP at 70 °C, with resulting TPUs that displayed excellent thermal and mechanical properties. TPUs pr...
High molecular weight semi crystalline thermoplastic poly(ester urethanes), TPEUs, were prepared fro...
Biodegradable polyester polyol was synthesized from oleochemical glycerol monostearate (GMS) and glu...
The sustainability of the polymeric materials has become a fundamental challenge; therefore, the dev...
Among the starting materials of thermoplastic polyurethanes (TPUs), it was confirmed that succinic a...
In this study, two novel, bio-based, amorphous polyester diols, namely poly(1,2-dimethylethylene adi...
A series of hyperbranched polyesters were incorporated by the chemical reaction of the dimethylolpro...
Completely bio-based polyols, suitable for the preparation of rigid polyurethanes were synthesized f...
Biobased thermoplastic polyurethanes (TPUs) obtained from dimer acid-based polyols, 4,40-diphenyl- m...
Polyurethanes are gaining increasing interest for their use as structural components subjected to cy...
Bio-polymers from sustainable natural resources serve mankind keeping environmental factors under co...
Thermoplastic polyurethane elastomers (TPUs) are widely applied and consumed in large quantities bec...
Understanding on the structure-property relationship between raw materials and the resultant polyur...
Bio-based polyols can replace petroleum-based polyols for the reaction with isocyanate groups to pre...
Biobased polyols were synthesized from reaction between epoxidized soybean oil and lactic, glycolic,...
The aim of the presented research was to obtain two new eco-polyols based on waste polylactide (PLA)...
High molecular weight semi crystalline thermoplastic poly(ester urethanes), TPEUs, were prepared fro...
Biodegradable polyester polyol was synthesized from oleochemical glycerol monostearate (GMS) and glu...
The sustainability of the polymeric materials has become a fundamental challenge; therefore, the dev...
Among the starting materials of thermoplastic polyurethanes (TPUs), it was confirmed that succinic a...
In this study, two novel, bio-based, amorphous polyester diols, namely poly(1,2-dimethylethylene adi...
A series of hyperbranched polyesters were incorporated by the chemical reaction of the dimethylolpro...
Completely bio-based polyols, suitable for the preparation of rigid polyurethanes were synthesized f...
Biobased thermoplastic polyurethanes (TPUs) obtained from dimer acid-based polyols, 4,40-diphenyl- m...
Polyurethanes are gaining increasing interest for their use as structural components subjected to cy...
Bio-polymers from sustainable natural resources serve mankind keeping environmental factors under co...
Thermoplastic polyurethane elastomers (TPUs) are widely applied and consumed in large quantities bec...
Understanding on the structure-property relationship between raw materials and the resultant polyur...
Bio-based polyols can replace petroleum-based polyols for the reaction with isocyanate groups to pre...
Biobased polyols were synthesized from reaction between epoxidized soybean oil and lactic, glycolic,...
The aim of the presented research was to obtain two new eco-polyols based on waste polylactide (PLA)...
High molecular weight semi crystalline thermoplastic poly(ester urethanes), TPEUs, were prepared fro...
Biodegradable polyester polyol was synthesized from oleochemical glycerol monostearate (GMS) and glu...
The sustainability of the polymeric materials has become a fundamental challenge; therefore, the dev...