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Oxidation of the Ru(0001) surface covered by weakly bound, ultrathin silicate films

机译:由弱结合的超薄硅酸盐薄膜覆盖的Ru(0001)表面的氧化

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摘要

Bilayer silicate films grown on metal substrates are weakly bound to the metal surfaces, which allows ambient gas molecules to intercalate the oxide/metal interface. In this work, we studied the interaction of oxygen with Ru(0001) supported ultrathin silicate and aluminosilicate films at elevated O pressures (10–10 mbar) and temperatures (450–923 K). The results show that the silicate films stay essentially intact under these conditions, and oxygen in the film does not exchange with oxygen in the ambient. O molecules readily penetrate the film and dissociate on the underlying Ru surface underneath. The silicate layer does however strongly passivate the Ru surface towards RuO(110) oxide formation that readily occurs on bare Ru(0001) under the same conditions. The results indicate considerable spatial effects for oxidation reactions on metal surfaces in the confined space at the interface. Moreover, the aluminosilicate films completely suppress the Ru oxidation, providing some rationale for using crystalline aluminosilicates in anti-corrosion coatings.
机译:在金属基材上生长的双层硅酸盐薄膜与金属表面的结合力弱,这使得环境气体分子可以嵌入氧化物/金属界面。在这项工作中,我们研究了氧气与Ru(0001)负载的超薄硅酸盐和铝硅酸盐薄膜在升高的O压力(10-10 mbar)和温度(450-923 K)下的相互作用。结果表明,在这些条件下,硅酸盐薄膜基本上保持完整,并且薄膜中的氧气不会与周围的氧气交换。 O分子容易穿透膜并在下面的下方Ru表面解离。然而,硅酸盐层确实使Ru表面朝向RuO(110)氧化物形成强烈钝化,RuO(110)氧化物形成在相同条件下在裸露Ru(0001)上容易发生。结果表明,界面处密闭空间中金属表面上的氧化反应具有很大的空间效应。而且,铝硅酸盐薄膜完全抑制了Ru的氧化,为在防腐蚀涂料中使用结晶铝硅酸盐提供了一些依据。

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