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Synthesis of polyurethanes through the oxidative decarboxylation of oxamic acids: a new gateway toward self-blown foams.


ABSTRACT: Polyurethane (PU) thermoplastics and thermosets were prepared through the step-growth polymerization of in situ generated polyisocyanates through the decarboxylation of polyoxamic acids, in the presence of phenyliodine diacetate (PIDA), and polyols. The CO2 produced during the reaction allowed the access to self-blown polyurethane foams through an endogenous chemical blowing. The acetic acid released from ligand exchange at the iodine center was also shown to accelerate the polymerization reaction, avoiding the recourse to an additional catalyst. Changing simple parameters during the production process allowed us to access flexible PU foams with a wide range of properties.

SUBMITTER: Jaussaud Q 

PROVIDER: S-EPMC11339942 | biostudies-literature | 2024 Aug

REPOSITORIES: biostudies-literature

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Synthesis of polyurethanes through the oxidative decarboxylation of oxamic acids: a new gateway toward self-blown foams.

Jaussaud Quentin Q   Ogbu Ikechukwu Martin IM   Pawar Govind Goroba GG   Grau Etienne E   Robert Frédéric F   Vidil Thomas T   Landais Yannick Y   Cramail Henri H  

Chemical science 20240725 33


Polyurethane (PU) thermoplastics and thermosets were prepared through the step-growth polymerization of <i>in situ</i> generated polyisocyanates through the decarboxylation of polyoxamic acids, in the presence of phenyliodine diacetate (PIDA), and polyols. The CO<sub>2</sub> produced during the reaction allowed the access to self-blown polyurethane foams through an endogenous chemical blowing. The acetic acid released from ligand exchange at the iodine center was also shown to accelerate the pol  ...[more]

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