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Combining in situ NEXAFS spectroscopy and CO2 methanation kinetics to study Pt and Co nanoparticle catalysts reveals key insights into the role of platinum in promoted cobalt catalysis

机译:结合原位NEXAFS光谱和CO2甲烷化动力学研究Pt和Co纳米颗粒催化剂,揭示了铂在促进钴催化中的作用的关键见解

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摘要

The mechanistic role of platinum and precious metals in promoting cobalt hydrogenation catalysts of the type used in reactions such as Fischer-Tropsch synthesis is highly debated. Here we use well-defined monometallic Pt and Co nanoparticles (NPs) and CO2 methanation as a probe reaction to show that Pt NPs deposited near Co NPs can enhance the CO2 methanation rate by up to a factor of 6 per Co surface atom. In situ NEXAFS spectroscopy of these same Pt NP plus Co NP systems in hydrogen shows that the presence of nearby Pt NPs is able to significantly enhance reduction of the Co at temperatures relevant to Fischer-Tropsch synthesis and CO2 methanation. The mechanistic role of Pt in these reactions is discussed in light of these findings. © 2014 American Chemical Society.
机译:铂和贵金属在促进诸如费-托合成之类的反应中使用的钴加氢催化剂中的机理作用一直存在争议。在这里,我们使用定义明确的单金属Pt和Co纳米颗粒(NPs)以及CO2甲烷化作为探针反应,以表明沉积在Co NPs附近的Pt NPs可以将CO2甲烷化率提高每个Co表面原子6倍。这些相同的Pt NP和Co NP系统在氢气中的原位NEXAFS光谱显示,邻近的Pt NP的存在能够在与费-托合成和CO2甲烷化相关的温度下显着增强Co的还原。根据这些发现,讨论了铂在这些反应中的机理作用。 ©2014美国化学学会。

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