4.8 Article

Insight into the Effect of Oxygen Vacancy Concentration on the Catalytic Performance of MnO2

期刊

ACS CATALYSIS
卷 5, 期 8, 页码 4825-4832

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acscatal.5b00320

关键词

oxygen vacancy; oxygen reduction reaction; DFT; beta-MnO2; catalytic activity

资金

  1. National Basic Research Program of China [2012CB215500, 2012CB720300]
  2. National Natural Science Foundation of China [21176271, 21376284]

向作者/读者索取更多资源

Oxygen vacancies (OVs) are important for changing the geometric and electronic structures as well as the chemical properties of MnO2. In this study, we performed a DFT+U calculation on the electronic structure and catalytic performance of a P-MnO2 catalyst for the oxygen reduction reaction (ORR) with different numbers and extents of OVs. Comparing those results with the experimental XRD analysis, we determined that OVs produce a new crystalline phase of beta-MnO2. Changes in the electronic structure (Bader charges, band structure, partial density of states, local density of states, and frontier molecular orbital), proton insertion, and oxygen adsorption in beta-MnO2 (110) were investigated as a function of the bulk OVs. The results show that a moderate concentration of bulk OVs reduced the band gap, increased the Fermi and HOMO levels of the MnO2 (or MnOOH), and elongated the O-O bond of the adsorbed O-2 and coadsorbed O-2 with H. These changes substantially increase the conductivity of MnO2 for the catalysis of ORR However, an excessively high concentration of OVs in beta-MnO2 (110) will work against the catalytic enhancement of MnO2 for ORB. The DFT+U calculation reveals that a moderate concentration of OVs induced a large overlap of the surface Mn d(z2) orbitals, thus introducing an extra donor level at the bottom of the conductive band, which increased the conductivity of beta-MnO2 (110). Such a curvilinear change of the catalytic activity and electronic structure as a function of the oxygen vacancy concentration suggests that the beta-MnO2 with moderate concentration OVs exhibits the highest conductivity and catalytic activity for ORR.

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