4.6 Article

Boosting the visible light photo-thermal catalytic performance of α-Bi2O3 by tuning Fe doping amount in carbonylation of isobutyl amine with CO2

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CHEMICAL ENGINEERING SCIENCE
卷 284, 期 -, 页码 -

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ces.2023.119454

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Carbon dioxide; Amines; Carbonylation; Catalysts

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In this study, Fe-doped alpha-Bi2O3 catalysts with different Fe/Bi molar ratios were synthesized and utilized in the carbonylation of isobutyl amine with CO2. The results showed that Fe doping significantly enhanced the catalytic abilities of alpha-Bi2O3.
CO2 capture and utilization are viewed as the attractive route to promote carbon neutrality. The alpha-Bi2O3 as a high-performance catalyst of the carbonylation of isobutyl amine with CO2 has been reported in our previous work. Herein, Fe-doped alpha-Bi2O3 with different molar ratios of Fe/Bi (Fe-x%-Bi2O3, x = 1, 3, 5, and 7:100) are further successfully synthesized and used firstly as photo, thermal and photo-thermal catalysts in the carbonylation of isobutyl amine with CO2 to N,N '-diisobutylurea. The result demonstrates the catalytic abilities of alpha-Bi2O3 are significantly boosted by Fe doping and follows an order of Fe-5%-Bi2O3 > Fe-3%-Bi2O3 >> Fe-1%-Bi2O3 > Fe-7%-Bi2O3 > Fe-0%-Bi2O3. Such differences in photo-thermal catalytic performances of Bi2O3 with different Fe doping amounts could be closely linked with the content of both oxygen vacancies and new impurity energy levels in Fe-x%-Bi2O3 based on the further analysis of characterization such as XRD, SEM, Raman, BET, XPS, EPR, UV-vis, PL and TPC.

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