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In situ XPS study of Pd(111) oxidation at elevated pressure, Part 2: Palladium oxidation in the 10(-1) mbar range

机译:高压下Pd(111)氧化的原位XPS研究,第2部分:10(-1)mbar范围内的钯氧化

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The oxidation of the Pd(1 1 1) surface was studied by in situ XPS during heating and cooling in 0.4 mbar O-2. The in situ XPS data were complemented by ex situ TPD results. A number of oxygen species and oxidation states of Palladium were observed in situ and ex situ. At 430 K, the Pd(1 1 1) surface was covered by a 2D oxide and by a supersaturated O-ads layer. The supersaturated O-ads layer transforms into the Pd5O4 phase upon heating and disappears completely at approximately 470 K. Simultaneously, small clusters of PdO, PdO seeds, are formed. Above 655 K, the bulk PdO phase appears and this phase decomposes completely at 815 K. Decomposition of the bulk oxide is followed by oxygen dissolution in the near-surface region and in the bulk. The oxygen species dissolved in the bulk is more favoured at high temperatures because oxygen cannot accumulate in the near-surface region and diffusion shifts the equilibrium towards the bulk species. The saturation of the bulk "reservoir" with oxygen leads to increasing the uptake of the near-surface region species. Surprisingly, the bulk PdO phase does not form during cooling in 0.4 mbar O-2, but the Pd5O4 phase appears below 745 K. This is proposed to be due to a kinetic limitation of PdO formation because at high temperature the rate of PdO seed formation is compatible with the rate of decomposition. (c) 2006 Elsevier B.V. All rights reserved.
机译:在0.4 mbar O-2中加热和冷却期间,通过原位XPS研究了Pd(1 1 1)表面的氧化。原位XPS数据得到原位TPD结果的补充。在原位和异位观察到许多氧物种和钯的氧化态。在430 K下,Pd(1 1 1)表面被2D氧化物和过饱和O-ads层覆盖。过饱和的O-ads层在加热时转变为P​​d5O4相,并在大约470 K时完全消失。同时,形成了PdO,PdO种子的小簇。高于655 K时,出现PdO本体相,该相在815 K时完全分解。本体氧化物的分解随后是氧在近表面区域和本体中的溶解。在高温下,溶解在主体中的氧更受青睐,因为氧气无法在近表面区域积聚并且扩散会将平衡移向主体。大量“储层”被氧气饱和导致增加近地表物种的吸收。出人意料的是,在0.4 mbar O-2中冷却期间未形成块状PdO相,但在745 K以下出现Pd5O4相。这是由于PdO形成的动力学限制,因为在高温下PdO晶种形成的速率与分解速率兼容。 (c)2006 Elsevier B.V.保留所有权利。

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