Hybrid amine‐functionalized graphene oxide as a robust bifunctional catalyst for atmospheric pressure fixation of carbon dioxide using cyclic carbonates
VB Saptal, T Sasaki, K Harada… - …, 2016 - Wiley Online Library
ChemSusChem, 2016•Wiley Online Library
An environmentally‐benign carbocatalyst based on amine‐functionalized graphene oxide
(AP‐GO) was synthesized and characterized. This catalyst shows superior activity for the
chemical fixation of CO2 into cyclic carbonates at the atmospheric pressure. The developed
carbocatalyst exhibits superior activity owing to its large surface area with abundant
hydrogen bonding donor (HBD) capability and the presence of well‐defined amine
functional groups. The presence of various HBD and amine functional groups on the …
(AP‐GO) was synthesized and characterized. This catalyst shows superior activity for the
chemical fixation of CO2 into cyclic carbonates at the atmospheric pressure. The developed
carbocatalyst exhibits superior activity owing to its large surface area with abundant
hydrogen bonding donor (HBD) capability and the presence of well‐defined amine
functional groups. The presence of various HBD and amine functional groups on the …
Abstract
An environmentally‐benign carbocatalyst based on amine‐functionalized graphene oxide (AP‐GO) was synthesized and characterized. This catalyst shows superior activity for the chemical fixation of CO2 into cyclic carbonates at the atmospheric pressure. The developed carbocatalyst exhibits superior activity owing to its large surface area with abundant hydrogen bonding donor (HBD) capability and the presence of well‐defined amine functional groups. The presence of various HBD and amine functional groups on the graphene oxide (GO) surface yields a synergistic effect for the activation of starting materials. Additionally, this catalyst shows high catalytic activity to synthesize carbonates at 70 °C and at 1 MPa CO2 pressure. The developed AP‐GO could be easily recovered and used repetitively in up to seven recycle runs with unchanged catalyst activity.
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