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Oxygen storage and redox properties of Nb-doped ZrO2-CeO2-Y2O3 solid solutions for three-way automobile exhaust catalytic converters

机译:三元汽车尾气催化转化器Nb掺杂ZrO2-CeO2-Y2O3固溶体的储氧和氧化还原特性

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It is shown that Nb-doped ZrO2-CeO2-Y2O3 solid solution (Nb-ZrCeYO) samples have enhanced oxygen storage (OS) capacity compared with Nb-free solid solutions. However, after several days of exposure to ambient air, the. OS behavior of the Nb-doped samples shows significant degradation. This degradation is slowed for samples stored in evacuated glass tubes. It is argued that Nb segregation or increase in the extent of this segregation to the surface upon extended exposure to ambient oxygen is the cause of the degradation. After impregnation with Pt, the enhancement of the OS capacity of Nb-doped oxygen storage component (OSC) relative to the Nb-free OSC is restored. The electrons supplied by metallic Pt mimic,reducing conditions, which are known to result in migration of Nb away from the surface and re-dispersion into the bulk Solid solution. Nb-doped samples impregnated with Pt show stable, time-independent OS performance. (C) 2016 Elsevier B.V. All rights reserved.
机译:结果表明,与不含Nb的固溶体相比,掺Nb的ZrO2-CeO2-Y2O3固溶体(Nb-ZrCeYO)样品具有更高的储氧量(OS)。但是,暴露在环境空气中几天后,。掺Nb样品的OS行为显示出明显的劣化。对于储存在真空玻璃管中的样品,这种降解速度减慢了。据认为,Nb的偏析或在长时间暴露于环境氧中时这种偏析在表面的程度增加是降解的原因。在用Pt浸渍之后,相对于无Nb的OSC,恢复了Nb掺杂的储氧组分(OSC)的OS容量的增强。金属Pt提供的电子模拟还原条件,已知条件会导致Nb从表面迁移并重新分散到整体固溶体中。掺有Pt的Nb掺杂样品显示出稳定的,与时间无关的OS性能。 (C)2016 Elsevier B.V.保留所有权利。

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