Jinsong Fu, Lin Zheng, Lijun Fu, Hongyu Liu, Jun Ding, Jing Feng, Guowei Deng
MCM-22 can encapsulate salen-Co(III)-OAc, improving catalyst activity and stability, while simplifying catalyst recovery and product purification.
INTRODUCTION: The copolymerization of carbon dioxide (CO2) and propylene oxide (PO) catalyzed by salen-Co(III)-OAc is an effective method to mitigate the greenhouse effect caused by carbon dioxide.
OBJECTIVE: This study aimed to improve the activity and stability of the salen-Co(III)-OAc catalyst and simplify the separation of catalyst and polymer.
METHODS: MCM-22 encapsulation strategy of salen-Co(III)-OAc was adopted, and the structure of catalyst was tested by ICP, UV-vis, SEM, TEM, EDS-mapping, XRD, and FT-IR techniques.
RESULTS: Under a PO/Catalyst ratio of 15000:1, salen-Co(III)-OAc exhibited a turnover frequency (TOF) of 350 h-¹, whereas the encapsulated variant achieved an enhanced TOF of 402 h-¹ under identical conditions. The improved activity of MCM-22-encapsulated salen-Co(III)-OAc can be attributed to its synergistic interaction resembling a "zeolite enzyme".
CONCLUSION: MCM-22 can encapsulate salen-Co(III)-OAc, improving catalyst activity and stability, while simplifying catalyst recovery and product purification.