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首页> 外文期刊>Applied Surface Science >The epitaxial growth of ZnO films on Cu(111) surface: Thickness dependence
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The epitaxial growth of ZnO films on Cu(111) surface: Thickness dependence

机译:Cu(111)表面上ZnO膜的外延生长:厚度依赖性

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ZnO ultrathin films supported on Cu, Ag or Au are attracting increasing interest because they can form under special conditions on commercial Cu/ZnO/Al2O3 catalysts for methanol synthesis, or can be used as alternative materials for catalysis, or as prototypes of the so-called inverse catalysts. In the present study, we have investigated the thickness dependence of the structure and electronic properties of free standing and Cu(111) supported ZnO ultrathin films by means of DFT+ U calculations. On the free-standing films, a flat graphitic-like morphology is observed up to 10 layers, where a transition to wurtzite-like structures occurs. On Cu(111), a slightly corrugated graphitic structure is obtained for ZnO films up to 4 layers. From 5 layers on, the rumpling becomes substantial and a phase transition to wurtzite takes place. The driving force behind the destabilization of flat graphitic films on Cu(111) is the charge transfer from the underlying Cu support to the film. This finding rationalizes the experimental observations that the transformation from graphitic to wurtzite polymorph of ZnO films on Cu takes place above 5-layer thickness.
机译:支持Cu,Ag或Au上的ZnO超薄膜吸引了越来越多的利息,因为它们可以在商业Cu / ZnO / Al2O3催化剂的特殊条件下形成甲醇合成,或者可以用作催化的替代材料,或者作为所以的原型称为逆催化剂。在本研究中,我们研究了通过DFT + U计算支持的自由静态和Cu(111)支持的ZnO超薄膜的结构和电子性质的厚度依赖性。在独立薄膜上,扁平的石墨形态被观察到多达10层,其中发生过紫立岩结构的过渡。在Cu(111)上,获得ZnO膜的略微波纹的石墨结构,高达4层。从5层开始,振动变得大幅度,并且发生了对紫斑ite的相位过渡。 Cu(111)上的扁平石墨膜的稳定化背后的驱动力是从底层Cu载体到薄膜的电荷转移。该发现可理解实验观察,即从Cu上的ZnO膜的石墨转化为ZnO薄膜的紫立茨多晶型物的发生在5层厚度上。

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