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Updated: Jan 18, 2026

Adsorption Device Based on a Langatate Crystal Microbalance for High Temperature High Pressure Gas Adsorption in Zeolite H-ZSM-5
Published on: August 25, 2016
Precise Modulation of Zeolite Acidity by Alkali Metal Ions for Enhancing Catalytic Performance in CO2 Cycloaddition
Yanke Guo1, Shiyue Liu1, Xu Liu2
1State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, Changchun 130021, P. R. China.
Abstract:
The CO2 cycloaddition route is an effective way to achieve efficient conversion and utilization of CO2. Zeolites with diverse topologies and tunable acidic sites can efficiently promote the cycloaddition reaction of CO2 with epoxides. The exchangeable cations in zeolites have a great influence on the performance of the CO2 cycloaddition, but there are few studies on it. In this paper, the effects of different alkali metal cation (Li+, Na+, and K+)-exchanged zeolites on the cycloaddition reaction of CO2 were studied to reveal the function of alkali metal cations. The promotion effect of different alkali metal ions on the catalytic performance of the CO2 cycloaddition reaction gradually increases in the sequence of K+ < Na+ < Li+. Based on the optimized reaction conditions and zeolite topologies, Li-MTW zeolite could achieve up to 95.99% yield of styrene carbonate, which could still be maintained at as high as 91.67% after five catalytic cycles. The computational results revealed that the ring-opening of styrene oxide is the rate-determining step of the catalytic cycle and Li-MTW has a lower reaction activation energy. This work will further deepen our understanding of the effect of alkali metal ions in zeolite on CO2 cycloaddition reactions.
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