Recent Advances in the Regulation of Oxygen Vacancies in MnO 2 Nanocatalysts

Y. H. Zhou, X. X. Lei, J. Y. Zhou, D. L. Yan,B. Deng,Y. D. Liu,W. L. Xu

CATALYSIS SURVEYS FROM ASIA(2023)

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摘要
Enhanced oxygen vacancy (V O ) has been designated as an effective strategy to prepare high-performance MnO 2 nanocatalysts for the oxidation of volatile organic compounds (VOC) for thereof unbalanced electronic structure, and rapid electron transfer which may even reduce the reaction temperature down to room temperature. Herein, the effects of the V O on the catalytic performance of nano-sized MnO 2 were discussed by classifying the V O into surface-anchored and bulk-involved ones. Currently used introducing and modulating methods for V O including elemental doping, energetic particle bombardment, atmosphere heat treatment, mechanical chemistry, and redox methods are detailly reviewed. Corresponding regulating mechanisms for V O are expounded. Commonly used characterization methods including ESR, XPS, HRTEM, and UV-vis are reviewed. Furtherly, the unveiled question which is highly expected to be answered on V O of MnO 2 nanocatalysts is proposed. The purpose of this review is to present the current status of research on MnO 2 nanoparticles and to provide researchers with basic research ideas.
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关键词
Oxygen vacancy,Volatile organic compounds,Manganese dioxide,Low-temperature catalytic oxidation,Heterogeneous catalysis
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