Publication | Closed Access
Potassium associated manganese vacancy in birnessite-type manganese dioxide for airborne formaldehyde oxidation
161
Citations
50
References
2018
Year
EngineeringOxidation ResistanceAir QualityChemistryInorganic MaterialBirnessite-type Manganese DioxideEnvironmental ChemistryChemical EngineeringMn VacanciesRedox ChemistryCatalytic ActivityHcho OxidationMaterials ScienceInorganic ChemistryManganese VacancyCatalysisHydrogenCatalytic ProcessEnvironmental EngineeringAirborne Formaldehyde OxidationAir PollutionDeoxygenation
The relationship between K<sup>+</sup> and Mn vacancies and the significant effect of the K<sup>+</sup> content on the structure, morphology and catalytic activity of birnessite-type MnO<sub>2</sub> for HCHO oxidation was systematically studied.
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