4.8 Article

Hierarchical Mesoporous MnO2 Superstructures Synthesized by Soft-Interface Method and Their Catalytic Performances

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 6, Issue 12, Pages 9776-9784

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/am502191k

Keywords

manganese dioxide; hierarchical mesoporous superstructure; formation mechanism; heterogeneous catalyst; methylene blue

Funding

  1. National Natural Science Foundation of China [11375111, 11074161]
  2. Research Fund for the Doctoral Program of Higher Education of China [20133108110021]
  3. Key Innovation Fund of Shanghai Municipal Education Commission [14ZZ098, 10ZZ64]
  4. Science and Technology Commission of Shanghai Municipality [10JC1405400]
  5. Shanghai Pujiang Program [10PJ1404100]
  6. Program for Innovative Research Team in University [IRT13078]
  7. General Research Fund from the Research Grants Council, Hong Kong [CityU 119212]

Ask authors/readers for more resources

To obtain a highly efficient and stable heterogeneous catalyst in catalytic wet hydrogen peroxide oxidation, we have successfully synthesized hierarchical mesoporous manganese dioxide (MnO2) superstructures by a facile and environmental friendly method on a soft-interface between CH2Cl2 and H2O without templates. The main crystal phase of as-prepared MnO2 was proved to be epsilon-MnO2 by X-ray diffraction techniques. The structure characterizations indicated that the hierarchical MnO2 superstructures were composed of urchin-like MnO2 hollow submicrospheres assembled by one-dimension nanorods building blocks with rich mesoporosity. The nitrogen sorption analysis confirmed that the as-synthesized MnO2 has an average pore diameter of 5.87 nm, mesoporous volume of 0.451 cm(3) g(-1), and specific surface area of 219.3 m(2) g(-1). Further investigations revealed that a possible formation mechanism of this unique hierarchical superstructure depended upon the synthesis conditions. The catalytic performances of the hierarchical mesoporous MnO2 superstructures were evaluated in catalytic degradation of methylene blue in the presence of H2O2 at neutral pH, which demonstrated highly efficient catalytic degradation of the organic pollutant methylene blue using hierarchical mesoporous MnO2 superstructures as catalyst at room temperature.

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