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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Stabilization of Ultrathin Zinc Oxide Films on Metals: Reconstruction versus Hydroxylation
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Stabilization of Ultrathin Zinc Oxide Films on Metals: Reconstruction versus Hydroxylation

机译:金属上超薄氧化锌膜的稳定性:重建与羟基化

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摘要

Thin (0001)-oriented films of ZnO on metals may exhibit interlayer relaxations, resulting in the hexagonal boron nitride-like crystal structure. The driving force for such reconstruction is the polar instability of either Zn- or O- terminated surfaces of ZnO(0001). Here, we examined surface hydroxylation as another possible stabilization mechanism. Zinc oxide films grown on Pt(111) were studied by infrared reflectionabsorption spectroscopy (IRAS) as a function of film thickness and morphology as imaged by scanning tunneling microscopy. Despite prepared in pure oxygen ambient, the as grown films on Pt(111) expose hydroxyl groups. In contrast, the bilayer films on Ag(111) do not exhibit OH species, not even upon dosing of hydrogen or water. The results show that hydrogen may efficiently be provided by a Pt support, even for the multilayer films, via hydrogen dissociation and subsequent diffusion of H atoms through the film. Thermal stability of the OH-terminated surfaces depends on the film thickness, with a monolayer film being the least stable. Removal of OH species from a monolayer film proceeds through water desorption and may be accompanied by hydrogen spillover onto more stable multilayer structures. Stabilization of the polar ZnO surface in the metal-supported films seems to be a delicate balance between interlayer relaxation and hydroxylation and depends on the metal support.
机译:金属上的ZnO的(0001)取向薄膜可能表现出层间弛豫,从而形成六方氮化硼样晶体结构。进行此类重构的驱动力是ZnO(0001)的Zn端或O端表面的极性不稳定性。在这里,我们检查了表面羟基化是另一种可能的稳定机制。通过红外反射吸收光谱法(IRAS)研究了在Pt(111)上生长的氧化锌膜与扫描隧道显微镜成像的膜厚和形貌的关系。尽管是在纯氧环境中制备的,但Pt(111)上生长的薄膜仍会暴露羟基。相反,Ag(111)上的双层膜甚至在加入氢气或水时都没有表现出OH物种。结果表明,即使对于多层膜,也可以通过氢解离和随后氢原子通过膜的扩散而有效地由Pt载体提供氢。 OH封端表面的热稳定性取决于薄膜厚度,其中单层薄膜的稳定性最差。从单层膜中除去OH物种是通过水解吸进行的,并且可能伴随有氢气溢出到更稳定的多层结构上。金属负载膜中极性ZnO表面的稳定似乎是层间弛豫和羟基化之间的微妙平衡,并且取决于金属载体。

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