4.8 Article

Surface Reduced Manganese States as a Source of Oxygen Reduction Activity in BaMnO3

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ADVANCED FUNCTIONAL MATERIALS
卷 33, 期 24, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.202214883

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electron energy loss spectroscopy; oxidation states; oxygen reduction reactions; perovskites; scanning transmission electron microscopy; structure-activity correlations

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By utilizing atomic-scale imaging and spectroscopic techniques, a structure-property correlation for the oxygen reduction reaction (ORR) in barium manganese oxide (BaMnO3) is established, with the presence of Mn3+ on the rod surface contributing to the electrocatalytic activity of the material.
In relation to perovskites, tweaking the oxidation state of the B-site cation is fundamental to controlling the catalytic activity of these materials, thus necessitating a complete characterization of surface oxidation states. Herein, using a combination of atomic-scale imaging and spectroscopic techniques, structure-property correlation in barium manganese oxide (BaMnO3) is established for the oxygen reduction reaction (ORR). Electron energy loss spectroscopy (EELS) on the synthesized BaMnO3 find the rods to contain an amorphous surface layer with reduced Mn3+ states compared to Mn4+ states in the bulk. Consequently, the BaMnO3 rods show electrocatalytic activity for the ORR, which originates from the presence of Mn3+ at the rod surface. Furthermore, heating of the samples in air at 300 and 800 degrees C results in a decrease in the number of Mn3+ states, and thus lowering of the ORR activity. This study represents a step-stone study in understanding the mechanism of ORR activity and its association to the Mn3+ state at the perovskite's surface, opening up possibilities for further surface engineering and tuning catalytic properties.

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