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Application of SEM/TEM to tests on Pt distribution in Al2O3 films obtained by oxidising FeCrAl steel foil coated with Pt-Al nanofilms

机译:用PT-Al nanofilms氧化碳纤维氧化物氧化物箔涂覆膜中PT分布对PT分布的应用

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摘要

Good dispersion of active catalytic elements, their uniform distribution on the carrier's surface and availability for neutralised combustion gases are key factors that determine the usability of catalyst cartridges for automotive catalytic reactors. By examining the morphology of oxide films, with SEM/STEM method, obtained by oxidation of foil coated with Pt/Al two-layered system (like laminate), where an Al nanofilm is situated between steel foil and a Pt nanofilm, one can observe forked and plate whiskers growing directly of substrate. Oxide films obtained from Pt+Al composite nanofilms were formed differently (where components are intermixed). These films are marked by chaotic, mutually penetrating fine equiaxed solids and whiskers. In case of composite nanofilms the grain system obtained in the course of deposition contributed to good Pt grain refining, and due to that mostly particles from 3 to 9 nm in conventional diameter were formed. Direct contact between Pt particles and Al particles caused the partial occlusion of Pt particles with oxide in the process of Al oxidation to be effected.
机译:活性催化元素的分散性好,它们的载体的表面和可用性中和的燃烧气体均匀分布是确定的用于汽车催化反应器催化剂的墨盒的可用性的关键因素。通过检查氧化膜的形态,用SEM / STEM法,通过镀铂/ Al的双层系统(如层压),其中的Al纳米薄膜位于钢箔和Pt纳米膜之间箔的氧化而获得,可以观察到分叉和板晶须直接生长衬底。选自Pt + Al系复合纳米薄膜得到的氧化物膜被不同地形成(其中组分混合)。这些薄膜是通过乱,相互贯穿的细等轴固体和晶须标记。在复合纳米薄膜的情况下,在沉积的过程中获得的粒系统促成良好的Pt的晶粒细化,并且由于其大部分粒子为3至在常规直径为9nm形成。 Pt粒子和Al粒子之间的直接接触引起的Pt粒子与以Al氧化过程氧化物的部分阻塞被实现。

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