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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Oxygen-vacancy mediated adsorption and reactions of molecular oxygen on the ZnO(1010) surface
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Oxygen-vacancy mediated adsorption and reactions of molecular oxygen on the ZnO(1010) surface

机译:氧空位介导的ZnO(1010)表面吸附和分子氧反应

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We present first-principles total-energy calculations of adsorption and reaction of molecular oxygen on the ZnO(1010) surface. We find that, on stoichiometric ZnO(1010) surfaces, the adsorption is fully molecular with a small adsorption energy and the dissociation is energetically unfavorable. On a partially reduced ZnO(1010) surface, the dissociative adsorption is energetically preferred, with one of the resulting oxygen atoms filling the original oxygen vacancy, while the other is in between two neighboring Zn atoms, forming a bridging oxygen adatom. This bridging oxygen may diffuse along the Zn-O dimer row and capture and fill another oxygen vacancy. The dissociative adsorption influences the electronic properties of the ZnO(1010) surface.
机译:我们目前的原理是分子氧在ZnO(1010)表面的吸附和反应的第一性原理。我们发现,在化学计量的ZnO(1010)表面上,吸附是完全分子的,具有较小的吸附能,并且离解在能量上是不利的。在部分还原的ZnO(1010)表面上,从能量上考虑,最好采用离解吸附,其中一个氧原子填充原始的氧空位,而另一个氧原子位于两个相邻的Zn原子之间,形成桥接氧原子。该桥接氧可沿Zn-O二聚体行扩散并捕获并填充另一个氧空位。离解吸附影响ZnO(1010)表面的电子性能。

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