Synthesis and characterization of isophorondiamine based epoxy hardeners from aminolysis of PET
The solvolysis of poly(ethylene-terephthalate) (PET) is one of the most researched areas in chemical recycling. In this study PET aminolysis with isophorondiamine has been done - in opposition to recent trends - without excess reagent and the raw reaction product was further used without purificatio...
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Budapest University of Technology
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doaj-d153551e40d1493b8694248f54b250ef2020-11-24T21:37:16ZengBudapest University of Technology eXPRESS Polymer Letters1788-618X2019-07-0113761863110.3144/expresspolymlett.2019.52Synthesis and characterization of isophorondiamine based epoxy hardeners from aminolysis of PETL. KarpatiM. FejerD. KalocsaiJ. MolnarV. VarghaThe solvolysis of poly(ethylene-terephthalate) (PET) is one of the most researched areas in chemical recycling. In this study PET aminolysis with isophorondiamine has been done - in opposition to recent trends - without excess reagent and the raw reaction product was further used without purification. The aminolysis product was thoroughly characterized with nuclear magnetic resonance (NMR) spectroscopy. Isophoronediamine was used as a solvent to prepare amine cross-linker solutions for epoxy resins. The effect of the concentration on the cross-linking reaction and thermomechanical prop¬erties were investigated. The curing reaction was found to be significantly accelerated by the presence of the aminolysis product. Both the ethylene-glycol and the terephthal-amide-diamines have a catalytic effect on the reaction. The glass transition temperature decreased with increasing concentrations of the cross-linker solutions due to the decreasing cross-link density. Thus, raw aminolysis products can be utilized for epoxy curing and are advantageous in modifying slower curing cycloaliphatic cross linker systems.http://www.expresspolymlett.com/letolt.php?file=EPL-0009812&mi=cdPolymer synthesis, molecular engineeringThermosetting resinsRecycling |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
L. Karpati M. Fejer D. Kalocsai J. Molnar V. Vargha |
spellingShingle |
L. Karpati M. Fejer D. Kalocsai J. Molnar V. Vargha Synthesis and characterization of isophorondiamine based epoxy hardeners from aminolysis of PET eXPRESS Polymer Letters Polymer synthesis, molecular engineering Thermosetting resins Recycling |
author_facet |
L. Karpati M. Fejer D. Kalocsai J. Molnar V. Vargha |
author_sort |
L. Karpati |
title |
Synthesis and characterization of isophorondiamine based epoxy hardeners from aminolysis of PET |
title_short |
Synthesis and characterization of isophorondiamine based epoxy hardeners from aminolysis of PET |
title_full |
Synthesis and characterization of isophorondiamine based epoxy hardeners from aminolysis of PET |
title_fullStr |
Synthesis and characterization of isophorondiamine based epoxy hardeners from aminolysis of PET |
title_full_unstemmed |
Synthesis and characterization of isophorondiamine based epoxy hardeners from aminolysis of PET |
title_sort |
synthesis and characterization of isophorondiamine based epoxy hardeners from aminolysis of pet |
publisher |
Budapest University of Technology |
series |
eXPRESS Polymer Letters |
issn |
1788-618X |
publishDate |
2019-07-01 |
description |
The solvolysis of poly(ethylene-terephthalate) (PET) is one of the most researched areas in chemical recycling. In this study PET aminolysis with isophorondiamine has been done - in opposition to recent trends - without excess reagent and the raw reaction product was further used without purification. The aminolysis product was thoroughly characterized with nuclear magnetic resonance (NMR) spectroscopy. Isophoronediamine was used as a solvent to prepare amine cross-linker solutions for epoxy resins. The effect of the concentration on the cross-linking reaction and thermomechanical prop¬erties were investigated. The curing reaction was found to be significantly accelerated by the presence of the aminolysis product. Both the ethylene-glycol and the terephthal-amide-diamines have a catalytic effect on the reaction. The glass transition temperature decreased with increasing concentrations of the cross-linker solutions due to the decreasing cross-link density. Thus, raw aminolysis products can be utilized for epoxy curing and are advantageous in modifying slower curing cycloaliphatic cross linker systems. |
topic |
Polymer synthesis, molecular engineering Thermosetting resins Recycling |
url |
http://www.expresspolymlett.com/letolt.php?file=EPL-0009812&mi=cd |
work_keys_str_mv |
AT lkarpati synthesisandcharacterizationofisophorondiaminebasedepoxyhardenersfromaminolysisofpet AT mfejer synthesisandcharacterizationofisophorondiaminebasedepoxyhardenersfromaminolysisofpet AT dkalocsai synthesisandcharacterizationofisophorondiaminebasedepoxyhardenersfromaminolysisofpet AT jmolnar synthesisandcharacterizationofisophorondiaminebasedepoxyhardenersfromaminolysisofpet AT vvargha synthesisandcharacterizationofisophorondiaminebasedepoxyhardenersfromaminolysisofpet |
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1725937234891243520 |