Cr(iii)-salophen catalysts: efficient single-component and binary systems for sustainable CO2/cyclohexene oxide copolymerization

Fonseca-Lopez, D; Ezenarro-Salcedo, D; Martinez J.; Rojas R.S.; Hurtado, JJ

Abstract

The rise in carbon dioxide (CO2) emissions and the accumulation of human-made CO2in the atmosphere are recognized as the primary causes of the greenhouse effect. Therefore, one strategy to address this issue is capturing and utilizing CO2as a raw material for producing high-value chemical compounds. The most promising reactions involve the catalytic conversion of CO2with epoxides to produce polycarbonates (PC). For this purpose, Co(iii) and Cr(iii) complexes (Cat1–Cat9) with salophen-type ligands were synthesized and tested as catalysts for the copolymerization of cyclohexene oxide (CHO) with CO2to create poly(cyclohexene)carbonate (PCHC). Their catalytic activity was initially assessed in single-component systems at 100 °C and 8 bar of CO2for 24 hours, where Cat5 demonstrated the highest selectivity. Subsequent optimization studies explored the effect of solvents, CO2pressure, and co-ligand variation. The best performance was obtained with the Cat5:DMAP binary system, producing a semi-crystalline PCHC copolymer with a high degree of isotacticity. This journal is © The Royal Society of Chemistry

Más información

Título según WOS: Cr(iii)-salophen catalysts: efficient single-component and binary systems for sustainable CO2/cyclohexene oxide copolymerization
Título de la Revista: RSC Advances
Volumen: 15
Número: 54
Editorial: Royal Society of Chemistry
Fecha de publicación: 2025
Página de inicio: 46727
Página final: 46736
Idioma: English
DOI:

10.1039/d5ra08569a

Notas: ISI