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Green and facile synthesis of nanostructured Co3O4/CeO2 catalysts via a glucose-urea method for NO oxidation

APPLIED SURFACE SCIENCE [2023]
Shengjun Yi, Pincai Lai, Guilin Ma, Jinjian Pan, Zhen Chen, Yuanhang Qin, Xingmao Jiang
ABSTRACT

Nanocatalysis plays an important role in chemical industrial production, environmental protection and etc. However, traditional catalyst preparation methods are generally labor-intensive, time-consuming and need high-temperature calcination, which are not conducive to the preparation of nanostructured catalyst. Therefore, developing a green and facile method for nano-sized catalyst preparation is very significative. In this work, a series of nano-sized Co 3 O 4 /CeO 2 catalysts with high specific surface area, high oxygen storage and homogeneous distribution of active species were synthesized via a glucose-urea (G-U method), and applied in NO oxidation The NO oxidation performance indicates that the 12.5% CoCe G−U catalyst prepared by the G-U method shows higher activity than those of catalysts prepared by the traditional methods (precipitation, hydrothermal and impregnation methods). The characterization results revealed that the CoCe G−U catalysts have the highest specific surface area, pore volume, content of surface Ce 3+ and Co 3+ among the catalysts. Moreover, the nano Co 3 O 4 is better dispersed on CeO 2 , which resulted in more active oxygen species on the surface of the catalysts prepared by the G-U method. Herein, the higher specific surface area, the smaller Co 3 O 4 nanoparticles, the more active oxygen species and the higher Ce 3+ and Co 3+ contents of the CoCe G−U catalyst lead to the more excellent NO oxidation performance. This work provides a green and efficient approach for the industrial production of nano-sized oxide catalysts.

MATERIALS

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