Access to Functionalized Polycarbonates Derived from Fatty Acid Esters via Catalytic ROCOP and Their Potential in Gel Formulations

Abstract

Fatty acid epoxides and carbon dioxide have been used as monomers to create functional polycarbonate macromolecules using catalytic ring-opening copolymerizations, providing molecular weights of up to 18.5 kg/mol under controlled conditions. The functionality in these polycarbonates can be controlled via either the pendent ester groups or using additional (functional) epoxy monomers, thereby creating terpolymeric compositions with cross-linkable or polarity-changing fragments. Potential depolymerization and upcycling of the polycarbonate atoms were investigated, allowing repurposing of the initial macromolecule into a bifunctional diurethane-diester monomer in good yield. The prospect of using bioderived polycarbonates as additives in biogel formulations was evaluated, showing it to improve the mechanical and adsorption properties of castor oil-based polyurethane gels.

Document Type

Article


Accepted version

Language

English

Subject

Química

Pages

26 p.

Publisher

ACS Publications

Grant Agreement Number

ICREA

Cerca program/Generalitat de Catalunya

MICINN (PID2020-112684GB-100, PDC2021-120952-I00 and Severo Ochoa Excellence Accreditation 2020–2023 CEX2019-000925-S)

AGAUR (2021-SGR-00853)

EU/FEDER funded program TRIPyr/Interreg POCTEFA

S.I. and P. B. acknowledge support from GREen ENdeavor in Art ResToration, GREENART (101060941)

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Documents

Macromolecules 2024 57 3816.pdf

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CC-BY

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