2020
DOI: 10.1016/j.apcatb.2019.118464
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Highly efficient mesoporous MnO2 catalysts for the total toluene oxidation: Oxygen-Vacancy defect engineering and involved intermediates using in situ DRIFTS

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Cited by 563 publications
(299 citation statements)
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“…Based on the in situ DRIFTS characterization, we can speculate the possible reaction path over α-MnO2@Co3O4, as follows [63,64]: adsorbed toluene → benzoate species → alkanes containing oxygen functional group (such as maleic anhydride) → CO2 and H2O. Moreover, it was observed that toluene can be more easily completely oxidized over α-MnO2@Co3O4 than over the pure α-MnO2 catalyst at the same temperature, which is consistent with the results of the catalytic activity tests for toluene oxidation.…”
Section: In Situ Drifts Analysismentioning
confidence: 99%
“…Based on the in situ DRIFTS characterization, we can speculate the possible reaction path over α-MnO2@Co3O4, as follows [63,64]: adsorbed toluene → benzoate species → alkanes containing oxygen functional group (such as maleic anhydride) → CO2 and H2O. Moreover, it was observed that toluene can be more easily completely oxidized over α-MnO2@Co3O4 than over the pure α-MnO2 catalyst at the same temperature, which is consistent with the results of the catalytic activity tests for toluene oxidation.…”
Section: In Situ Drifts Analysismentioning
confidence: 99%
“…The O 1s spectrum, in Figure 2D , shows two peaks at 529.8, and 531.5 eV, which are correlated to the normal lattice oxygen (O latt ), and adsorbed oxygen (O abs ), respectively. Since the surface adsorbed oxygen mainly occurs at the oxygen vacancy, the oxygen vacancy content can be known through the analysis of O abs ( Li et al, 2020b ; Mo et al, 2020 ). Through the O 1s spectrum, it can be found that the proportion of O abs increases after the calcination and adsorption-calcination process, indicating that the process can introduce more oxygen vacancies in the MnO 2 structure.…”
Section: Resultsmentioning
confidence: 99%
“…Migration and transformation cycles of the oxygen species during toluene oxidation occur. [ 44 ] The formation of additional surface oxygen vacancies improves oxygen transfer, which directly provides active oxygen species for the reaction, [ 21 ] thereby improving the efficiency toward the catalytic oxidation of toluene. Additionally, oxygen migration promotes additional surface oxygen vacancies during the reaction.…”
Section: Resultsmentioning
confidence: 99%