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A theoretical study of stability and vacancy replenishing of MoO3(010) surfaces in oxygen atmosphere

机译:MoO3(010)表面在氧气氛中的稳定性和空位补给的理论研究

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摘要

Oxygen vacancies on transition metal oxide surfaces are catalytically very important. The stability, shape and replenishing process of the vacancies are critical to understanding reactions happening on the surfaces. In this paper we investigate the stability of various defective MoO3 (0 1 0) surfaces and examine the influence of environmental oxygen on the stability as well as the active sites for the replenishing process. Our calculations reveal that the line oxygen defect along a (asymmetric oxygen) direction is thermodynamically most favorable at higher defect concentration whereas point defect surfaces are unfavorable. Under normal experimental conditions the perfect surface dominates the MoO3 (0 1 0). We show that for stoichiometric surfaces of any oxides (A(x)O(y)) the formation energy per vacancy controls the favorable defect shape (line or point defects). Calculations indicate that O-2 can dissociate readily on the surfaces that double vacancies share one Mo atom. The replenishing process of the oxygen vacancies through O-2 dissociation most likely occurs on the double-vacancy containing one terminal and one asymmetrical oxygen vacancies. (C) 2015 Elsevier B.V. All rights reserved.
机译:过渡金属氧化物表面上的氧空位在催化上非常重要。空位的稳定性,形状和补充过程对于理解表面发生的反应至关重要。在本文中,我们研究了各种有缺陷的MoO3(0 1 0)表面的稳定性,并研究了环境氧对其稳定性以及补给过程中活性部位的影响。我们的计算表明,沿(不对称氧)方向的线氧缺陷在较高的缺陷浓度下在热力学上最有利,而点缺陷表面则不利。在正常实验条件下,理想表面占主导地位的MoO3(0 1 0)。我们表明,对于任何氧化物(A(x)O(y))的化学计量表面,每个空位的形成能控制着有利的缺陷形状(线或点缺陷)。计算表明,O-2可以在双空位共有一个Mo原子的表面上轻易解离。通过O-2解离来补充氧空位的过程最可能发生在包含一个末端和一个不对称氧空位的双空位上。 (C)2015 Elsevier B.V.保留所有权利。

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