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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Structure-Sensitivity Factors Based on Highly Active CO2 Methanation Catalysts Prepared via the Polygonal Barrel-Sputtering Method
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Structure-Sensitivity Factors Based on Highly Active CO2 Methanation Catalysts Prepared via the Polygonal Barrel-Sputtering Method

机译:基于高活性CO 2甲烷化催化剂的结构敏感性因子通过多边形桶 - 溅射法制备

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摘要

This study elucidates the factors reducing the CO2 methanation reaction temperature of TiO2-supported Ru catalysts prepared via the polygonal barrel-sputtering method (Ru/TiO2(BS)) to investigate the structure-sensitivity mechanism. The smaller nanoparticles deposited in Ru/TiO2(BS) (<4 nm) were amorphous RuO2 because of air exposure after the preparation, and their surfaces were changed to island-shaped structures consisting of amorphous RuO2 and amorphous Ru metal by H-2 exposure. In this case, dissociative hydrogen was also adsorbed in abundance on the amorphous Ru metals. Such hydrogen atoms were not observed in conventional Ru/TiO2 catalysts. Under the supplied CO2 + H-2 at a stoichiometric ratio of 1:4, these hydrogen atoms not only contributed to the generation of a unique CO intermediate (Ru-CO-Ru-H) from room temperature, but also reduced this CO adsorbate to methane even in low-temperature ranges (<= 120 degrees C). These reaction steps were completely different from the reported mechanisms. Accordingly, the formation of amorphous Ru metals and the adsorption of hydrogen atoms on them are essential for reducing the CO2 methanation temperature. These are key factors of structure-sensitivity, which would also be useful for improving activities of various catalysts.
机译:该研究阐明了通过多边形桶溅射法(Ru / TiO 2(BS))制备的TiO 2支持的Ru催化剂的CO 2甲烷化反应温度的因素(Ru / TiO 2(BS))以研究结构敏感性机制。沉积在Ru / TiO 2(BS)(<4nM)中的较小纳米颗粒是由于制备后的空气暴露,并且将它们的表面改变为由H-2曝光组成的岛状结构和无定形Ru金属组成。在这种情况下,解离氢也吸附在无定形Ru金属上的丰度。在常规的Ru / TiO 2催化剂中未观察到这种氢原子。在提供的CO 2 + H-2下以化学计量的比例为1:4,这些氢原子不仅有助于从室温中产生独特的CO中间(Ru-Co-Ru-H),而且还可降低该Co吸附物即使在低温范围内甲烷(<= 120℃)。这些反应步骤与报告的机制完全不同。因此,无定形Ru金属的形成和氢原子的吸附对于降低CO 2甲烷化温度是必不可少的。这些是结构敏感性的关键因素,这对改善各种催化剂的活性也是有用的。

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