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Population and hierarchy of active species in gold iron oxide catalysts for carbon monoxide oxidation

机译:一氧化碳氧化金铁氧化物催化剂中活性物种的数量和层次

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摘要

The identity of active species in supported gold catalysts for low temperature carbon monoxide oxidation remains an unsettled debate. With large amounts of experimental evidence supporting theories of either gold nanoparticles or sub-nm gold species being active, it was recently proposed that a size-dependent activity hierarchy should exist. Here we study the diverging catalytic behaviours after heat treatment of Au/FeOx materials prepared via co-precipitation and deposition precipitation methods. After ruling out any support effects, the gold particle size distributions in different catalysts are quantitatively studied using aberration corrected scanning transmission electron microscopy (STEM). A counting protocol is developed to reveal the true particle size distribution from HAADF-STEM images, which reliably includes all the gold species present. Correlation of the populations of the various gold species present with catalysis results demonstrate that a size-dependent activity hierarchy must exist in the Au/FeOx catalyst.
机译:负载型金催化剂中用于低温一氧化碳氧化的活性物种的身份仍未解决。有大量的实验证据支持金纳米颗粒或亚纳米金物种具有活性的理论,最近有人提出应该存在一种与尺寸有关的活性等级。在这里,我们研究了通过共沉淀和沉积沉淀法制备的Au / FeOx材料热处理后的发散催化行为。排除任何支持作用后,使用像差校正扫描透射电子显微镜(STEM)定量研究了不同催化剂中金的粒度分布。开发了一种计数协议以揭示HAADF-STEM图像的真实粒度分布,该图像可靠地包括了所有存在的金物质。存在的各种金的种群与催化结果的相关性表明,Au / FeOx催化剂中必须存在与尺寸有关的活性等级。

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