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- W3209688300 endingPage "2103052" @default.
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- W3209688300 abstract "Manganese dioxide (MnO2 ), with naturally abundant crystal phases, is one of the most active candidates for toluene degradation. However, it remains ambiguous and controversial of the phase-activity relationship and the origin of the catalytic activity of these multiphase MnO2 . In this study, six types of MnO2 with crystal phases corresponding to α-, β-, γ-, ε-, λ-, and δ-MnO2 are prepared, and their catalytic activity toward ozone-assisted catalytic oxidation of toluene at room temperature are studied, which follow the order of δ-MnO2 > α-MnO2 > ε-MnO2 > γ-MnO2 > λ-MnO2 > β-MnO2 . Further investigation of the specific oxygen species with the toluene oxidation activity indicates that high catalytic activity of MnO2 is originated from the rich oxygen vacancy and the strong mobility of oxygen species. This work illustrates the important role of crystal phase in determining the oxygen vacancies' density and the mobility of oxygen species, thus influencing the catalytic activity of MnO2 catalysts, which sheds light on strategies of rational design and synthesis of multiphase MnO2 catalysts for volatile organic pollutants' (VOCs) degradation." @default.
- W3209688300 created "2021-11-08" @default.
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- W3209688300 date "2021-10-31" @default.
- W3209688300 modified "2023-10-17" @default.
- W3209688300 title "Investigation into the Phase–Activity Relationship of MnO <sub>2</sub> Nanomaterials toward Ozone‐Assisted Catalytic Oxidation of Toluene" @default.
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- W3209688300 doi "https://doi.org/10.1002/smll.202103052" @default.
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