Incorporation of aminoalcohols to tune the properties of polyurethane systems

It is common practice to incorporate low molecular weight molecules, known as chain extenders, to enhance the performance of polyurethane (PU) material. They usually increase the phase separation between the soft and hard domains, which has a significant impact on the density of hydrogen bonds. Amin...

Full description

Autores:
Adam, Alexandre
Rezaiguia, Saadane
Severac, Romain
Bouquey, Michel
Tipo de recurso:
Conferencia (Ponencia)
Fecha de publicación:
2024
Institución:
Universidad de los Andes
Repositorio:
Séneca: repositorio Uniandes
Idioma:
eng
OAI Identifier:
oai:repositorio.uniandes.edu.co:1992/76049
Acceso en línea:
https://hdl.handle.net/1992/76049
https://doi.org/10.51573/Andes.PPS39.GS.PS.1
https://repositorio.uniandes.edu.co/
Palabra clave:
Aminoalcohols
Polyurethanes
Ingeniería
Rights
openAccess
License
https://repositorio.uniandes.edu.co/static/pdf/aceptacion_uso_es.pdf
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dc.title.eng.fl_str_mv Incorporation of aminoalcohols to tune the properties of polyurethane systems
title Incorporation of aminoalcohols to tune the properties of polyurethane systems
spellingShingle Incorporation of aminoalcohols to tune the properties of polyurethane systems
Aminoalcohols
Polyurethanes
Ingeniería
title_short Incorporation of aminoalcohols to tune the properties of polyurethane systems
title_full Incorporation of aminoalcohols to tune the properties of polyurethane systems
title_fullStr Incorporation of aminoalcohols to tune the properties of polyurethane systems
title_full_unstemmed Incorporation of aminoalcohols to tune the properties of polyurethane systems
title_sort Incorporation of aminoalcohols to tune the properties of polyurethane systems
dc.creator.fl_str_mv Adam, Alexandre
Rezaiguia, Saadane
Severac, Romain
Bouquey, Michel
dc.contributor.author.none.fl_str_mv Adam, Alexandre
Rezaiguia, Saadane
Severac, Romain
Bouquey, Michel
dc.contributor.editor.none.fl_str_mv Salcedo, Felipe
Perilla, Jairo Ernesto
Sierra, Cesar
Medina, Jorge Alberto
dc.subject.keyword.none.fl_str_mv Aminoalcohols
Polyurethanes
topic Aminoalcohols
Polyurethanes
Ingeniería
dc.subject.themes.none.fl_str_mv Ingeniería
description It is common practice to incorporate low molecular weight molecules, known as chain extenders, to enhance the performance of polyurethane (PU) material. They usually increase the phase separation between the soft and hard domains, which has a significant impact on the density of hydrogen bonds. Aminoalcohols, molecules with both hydroxyl and amine functional groups, are important building blocks in the synthesis of pharmaceuticals but are also widely used in cosmetics or paints and coatings. Easily derived from abundant natural sources, such as amino acids, aminoalcohols align with the need for renewable and sustainable sources. Despite their importance, the specific reactivity of aminoalcohols towards isocyanates and their contribution to PU-based formulations remain underexplored. They can act as chain extenders as well as crosslinkers and catalysts. This study addressed this knowledge gap by assessing the feasibility of adding various aminoalcohols to create hybrid poly(urethane-urea) formulations. By measuring the exothermicity of the polymerization and gel times, we calculated that all tested aminoalcohols have a catalytic activity on the formation of the polymer network. We also identified DMAMP as a promising reactive catalyst whose integration into the network is of primary interest to formulate products that do not emit volatile organic compounds. Moreover, increasing the amount of aminoalcohols stiffened the foams while maintaining the density constant. X-ray tomography completed the characterizations of the foams. Taken together, these results open possibilities for using aminoalcohols to enhance and tune material performances while contributing to more environmentally friendly PU formulations.
publishDate 2024
dc.date.issued.none.fl_str_mv 2024-12
dc.date.accessioned.none.fl_str_mv 2025-02-07T16:36:46Z
dc.date.available.none.fl_str_mv 2025-02-07T16:36:46Z
dc.type.none.fl_str_mv Documento de Conferencia
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dc.identifier.isbn.none.fl_str_mv 978-958-798-779-9
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dc.identifier.doi.none.fl_str_mv https://doi.org/10.51573/Andes.PPS39.GS.PS.1
dc.identifier.instname.none.fl_str_mv Universidad de los Andes
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identifier_str_mv 978-958-798-779-9
Universidad de los Andes
Repositorio Institucional Séneca
url https://hdl.handle.net/1992/76049
https://doi.org/10.51573/Andes.PPS39.GS.PS.1
https://repositorio.uniandes.edu.co/
dc.language.iso.none.fl_str_mv eng
language eng
dc.relation.conferencedate.none.fl_str_mv 05-19-2024/05-23-2024
dc.relation.conferenceplace.none.fl_str_mv Cartagena de Indias, Colombia
dc.relation.ispartofconference.none.fl_str_mv Proceedings of the 39th International Conference of the Polymer Processing Society (PPS-39)
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dc.format.extent.none.fl_str_mv 13 páginas
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dc.publisher.none.fl_str_mv Ediciones Uniandes
dc.publisher.faculty.none.fl_str_mv Facultad de Ingeniería
dc.publisher.place.none.fl_str_mv Bogotá
publisher.none.fl_str_mv Ediciones Uniandes
institution Universidad de los Andes
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spelling Adam, AlexandreRezaiguia, SaadaneSeverac, RomainBouquey, MichelSalcedo, FelipePerilla, Jairo ErnestoSierra, CesarMedina, Jorge Alberto2025-02-07T16:36:46Z2025-02-07T16:36:46Z2024-12978-958-798-779-9https://hdl.handle.net/1992/76049https://doi.org/10.51573/Andes.PPS39.GS.PS.1Universidad de los AndesRepositorio Institucional Sénecahttps://repositorio.uniandes.edu.co/It is common practice to incorporate low molecular weight molecules, known as chain extenders, to enhance the performance of polyurethane (PU) material. They usually increase the phase separation between the soft and hard domains, which has a significant impact on the density of hydrogen bonds. Aminoalcohols, molecules with both hydroxyl and amine functional groups, are important building blocks in the synthesis of pharmaceuticals but are also widely used in cosmetics or paints and coatings. Easily derived from abundant natural sources, such as amino acids, aminoalcohols align with the need for renewable and sustainable sources. Despite their importance, the specific reactivity of aminoalcohols towards isocyanates and their contribution to PU-based formulations remain underexplored. They can act as chain extenders as well as crosslinkers and catalysts. This study addressed this knowledge gap by assessing the feasibility of adding various aminoalcohols to create hybrid poly(urethane-urea) formulations. By measuring the exothermicity of the polymerization and gel times, we calculated that all tested aminoalcohols have a catalytic activity on the formation of the polymer network. We also identified DMAMP as a promising reactive catalyst whose integration into the network is of primary interest to formulate products that do not emit volatile organic compounds. Moreover, increasing the amount of aminoalcohols stiffened the foams while maintaining the density constant. X-ray tomography completed the characterizations of the foams. 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