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首页> 外文期刊>Scientific reports. >The Hydration Structure at Yttria-Stabilized Cubic Zirconia (110)-Water Interface with Sub-?ngstr?m Resolution
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The Hydration Structure at Yttria-Stabilized Cubic Zirconia (110)-Water Interface with Sub-?ngstr?m Resolution

机译:亚基稳定的立方氧化锆(110)-WATE界面的水合结构,具有亚Δngstrαm分辨率

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The interfacial hydration structure of yttria-stabilized cubic zirconia (110) surface in contact with water was determined with ~0.5?? resolution by high-resolution X-ray reflectivity measurement. The terminal layer shows a reduced electron density compared to the following substrate lattice layers, which indicates there are additional defects generated by metal depletion as well as intrinsic oxygen vacancies, both of which are apparently filled by water species. Above this top surface layer, two additional adsorbed layers are observed forming a characteristic interfacial hydration structure. The first adsorbed layer shows abnormally high density as pure water and likely includes metal species, whereas the second layer consists of pure water. The observed interfacial hydration structure seems responsible for local equilibration of the defective surface in water and eventually regulating the long-term degradation processes. The multitude of water interactions with the zirconia surface results in the complex but highly ordered interfacial structure constituting the reaction front.
机译:用〜0.5〜0.5测定与水接触的氧化钇稳定立方氧化锆(110)表面的界面水合结构。高分辨率X射线反射率测量分辨率。与后面的基板晶格层相比,末端层显示了减少的电子密度,这表明存在由金属耗尽和固有氧空位产生的附加缺陷,这两者都被水物种显然填充。在该顶表面层上方,观察到两层形成具有特征界面水合结构的另外两个吸附层。第一吸附层显示出异常高密度作为纯水,并且可能包括金属物种,而第二层由纯水组成。观察到的界面水合结构似乎负责水中缺陷表面的局部平衡,最终调节长期降解过程。与氧化锆表面的多种水相互作用导致构成反应前方的复合物但高度有序的界面结构。

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