Jaeho Kim , Kihyuk Sung , Ju-Hyung Chae , In-Hwan Lee , Hye-Young Jang
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Zn-gallate catalyzed synthesis of high-performance CO2-polymers with tunable composition and architecture
To address the urgent need for CO2 utilization in climate change mitigation, this study presents a highly efficient Zn-gallate catalyzed polymer synthesis, directly incorporating CO2 alongside lactide and propylene oxide. This versatile catalyst facilitates both one-step random and sequential polymerization strategies, providing access to a diverse range of CO2-polymers. By precisely controlling composition and architecture, we synthesized random terpolymers, incorporating CO2, with catalytic activities of 1.7–3.6 kg/g-cat and 9.4 − 36 wt% PLA, and block copolymers involving CO2 with catalytic activities of 0.7–3.0 kg/g-cat and 15 − 76 wt% PLA. These precisely tailored CO2-polymers display their potential to replace fossil-fuel-derived plastics like LDPE.
期刊介绍:
The Journal of CO2 Utilization offers a single, multi-disciplinary, scholarly platform for the exchange of novel research in the field of CO2 re-use for scientists and engineers in chemicals, fuels and materials.
The emphasis is on the dissemination of leading-edge research from basic science to the development of new processes, technologies and applications.
The Journal of CO2 Utilization publishes original peer-reviewed research papers, reviews, and short communications, including experimental and theoretical work, and analytical models and simulations.