A Nanoscale Demonstration of Hydrogen Atom Spillover and Surface Diffusion Across Silica Using the Kinetics of CO<sub>2</sub> Methanation Catalyzed on Spatially Separate Pt and Co Nanoparticles. — Simon K. Beaumont (2014) | RDL Network
A Nanoscale Demonstration of Hydrogen Atom Spillover and Surface Diffusion Across Silica Using the Kinetics of CO<sub>2</sub> Methanation Catalyzed on Spatially Separate Pt and Co Nanoparticles.
Article 2014 en
Authors
SB
Simon K. Beaumont
SA
Selim Alayoǧlu
CS
Colin Specht
Abstract
1 min read
Hydrogen spillover is of great importance to understanding many phenomena in heterogeneous catalysis and has long been controversial. Here we exploit well-defined nanoparticles to demonstrate its occurrence through evaluation of CO2 methanation kinetics. Combining platinum and cobalt nanoparticles causes a substantial increase in reaction rate, but increasing the spatial separation between discrete cobalt and platinum entities results in a dramatic ∼ 50% drop in apparent activation energy, symptomatic of H atom surface diffusion limiting the reaction rate.
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