articleThe Journal of Physical Chemistry CMar 18, 2008Closed access

Effect of Phase Structure of MnO 2 Nanorod Catalyst on the Activity for CO Oxidation

Tsinghua University

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Abstract

The α-, β-, γ-, and δ-MnO2 nanorods were synthesized by the hydrothermal method. Their catalytic properties for CO oxidation were evaluated, and the effects of phase structures on the activities of the MnO2 nanorods were investigated. The activities of the catalysts decreased in the order of α- ≈ δ- > γ- > β-MnO2. The mechanism of CO oxidation over the MnO2 nanorods was suggested as follows. The adsorbed CO was oxidized by the lattice oxygen, and the MnO2 nanorods were partly reduced to Mn2O3 and Mn3O4. Then, Mn2O3 and Mn3O4 were oxidized to MnO2 by gaseous oxygen. CO chemisorption, the Mn−O bond strength of the MnO2, and the transformation of intermediate oxides Mn2O3 and Mn3O4 into MnO2 can significantly…

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664
total citations
FWCI
7.70
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100%
References
46
Citations per year

Authors

5

Topics & keywords

Keywords
  • Nanorod
  • Catalysis
  • Hydrothermal circulation
  • Chemisorption
  • Oxygen
  • Chemical engineering
  • Phase (matter)
  • Chemistry
UN Sustainable Development Goals
  • Clean water and sanitation
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