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      Self-Propagated Flaming Synthesis of Highly Active Layered CuO-δ-MnO2 Hybrid Composites for Catalytic Total Oxidation of Toluene Pollutant.

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          Abstract

          A new self-propagated flaming (SPF) technique was applied to the synthesis of highly active layered CuO-δ-MnO2 hybrid composites, for the de-polluting catalytic total oxidation of gaseous toluene vapor. Other transition metal oxide-doped MnO2 hybrid composites were also successfully prepared and investigated, ensuring a feasible strategy for the fabrication of various layered MOx-δ-MnO2 (M═Co, Ni, or Zn) hybrids. By changing the molar ratio of the precursors (KMnO4 and acetate salt) and the type of transition metal oxide introduced, it is possible to control the crystal structure and reducibility of the sheetlike hybrid composites as well as the catalytic activity for the total oxidation of toluene. The catalyst sample (CuO-δ-MnO2) with a Mn/Cu molar ratio of 10:1 exhibited the highest catalytic performance, with a lower reaction temperature of 300 °C for complete toluene removal, which was comparable to the reaction temperature for total toluene conversion by the Pt-based catalyst. The SPF technique provides an approach for developing highly efficient catalysts for the complete removal of volatile organic compounds, by allowing the facile and energy-saving fabrication of large quantities of layered CuO-δ-MnO2 hybrids.

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          Author and article information

          Journal
          ACS Appl Mater Interfaces
          ACS applied materials & interfaces
          American Chemical Society (ACS)
          1944-8252
          1944-8244
          Jul 05 2017
          : 9
          : 26
          Affiliations
          [1 ] School of Chemical Engineering, & Institute of New Energy and Low Carbon Technology, Sichuan University , Chengdu 610065, China.
          [2 ] Shenyang National Laboratory for Materials Science (SYNL), Institute of Metal Research, Chinese Academy of Science , Shenyang 110016, China.
          [3 ] Dalian National Laboratory for Clean Energy (DNL), Dalian Institute of Chemical Physics, Chinese Academy of Sciences , Dalian 116023, China.
          Article
          10.1021/acsami.7b04380
          28589715
          4dde047c-5054-41a7-af58-b794870c849a
          History

          catalytic combustion,layered transition metal oxide-doped MnO2,highly efficient CuO-δ-MnO2 nanocatalyst,Self-propagated flaming (SPF) technique,volatile organic compounds

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