Photothermal oxidation of cyclohexane by graphene oxide-based composites with high selectivity to KA oil
01 natural sciences
7. Clean energy
0104 chemical sciences
DOI:
10.1016/j.mcat.2020.111103
Publication Date:
2020-07-08T22:30:45Z
AUTHORS (8)
ABSTRACT
Abstract Designing high-performance catalyst for the oxidation of cyclohexane (CyH) into value-added products like cyclohexanol and cyclohexanone (the mixture called KA oil) is of paramount significance in chemical industry. Herein, the catalytic activity of graphene oxide coupled with Ag and Fe3O4 nanopaticles composites (GO-AgF (b) Higher selectivity and milder condition were achieved by photothermal catalysis comparing to that of the thermal catalysis; (c) Ag NPs played more important role in photocatalysis, while thermocatalysis was intensified by Fe3O4 NPs. Using 1.5 MPa of dry air as oxidant, 6.6 % of CyH conversion with over 98 % of selectivity was gained by GO-Ag&Fe3O4 NPs. Additionally, no obvious decline in catalytic efficiency was observed after 5 cycles. The concept of photothermal cooperation for CyH oxidation over GO-Ag&Fe3O4 NPs may provide a new approach for the partial oxidation of saturated C H and the design of high-performance catalysts.
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