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RHEED structural study of the novel tin-cerium oxide catalyst

机译:新型锡铈氧化物催化剂的RHEED结构研究

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We present our study of Sn interaction with CeO2 (1 1 1) thin film supported by a Cu (1 1 1) single crystal. After deposition of metallic tin, tin-cerium mixed oxide is formed in the subsurface region by substitution of cerium atoms by tin in the cerium oxide crystal lattice. This process leads to transformation of the original fluorite structure of cerium dioxide to a simple cubic structure. The excessive metallic tin remaining on the surface forms three populations of small epitaxial clusters with tetragonal structure and the (0 1 0) crystallographic plane parallel to the surface. Two of these populations are favored over the third one, due to their better accommodation to the substrate lattice. After annealing the sample at 400 degrees C in oxygen atmosphere the metallic Sn clusters disappear and a very thin film of polycrystalline tin dioxide is formed. (C) 2014 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:我们目前对Sn与由Cu(1 1 1)单晶支撑的CeO2(1 1 1)薄膜的相互作用进行研究。在沉积金属锡之后,通过在氧化铈晶格中用锡代替铈原子,在次表面区域中形成锡-铈混合氧化物。该过程导致二氧化铈的原始萤石结构转变为简单的立方结构。残留在表面上的过量金属锡形成三个四方结构的小外延簇,且(0 1 0)晶面平行于该表面。这些种群中有两个种群比第三个种群更受青睐,因为它们对基质晶格的适应性更好。在氧气气氛中将样品在400摄氏度下退火后,金属锡簇消失,形成了非常薄的多晶二氧化锡薄膜。 (C)2014 Elsevier Ltd和Techna Group S.r.l.版权所有。

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