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  5. Evidence of Structure Sensitivity in the Fischer–Tropsch Reaction on Model Cobalt Nanoparticles by Time‐Resolved Chemical Transient Kinetics

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Article
en
2017

Evidence of Structure Sensitivity in the Fischer–Tropsch Reaction on Model Cobalt Nanoparticles by Time‐Resolved Chemical Transient Kinetics

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en
2017
Vol 56 (26)
Vol. 56
DOI: 10.1002/anie.201701186

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Gabor Somorjai
Gabor Somorjai

University of California, Berkeley

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Walter T. Ralston
Gérôme Melaet
Tommy Saephan
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Abstract

Abstract The Fischer–Tropsch process, or the catalytic hydrogenation of carbon monoxide (CO), produces long chain hydrocarbons and offers an alternative to the use of crude oil for chemical feedstocks. The observed size dependence of cobalt (Co) catalysts for the Fischer–Tropsch reaction was studied with colloidally prepared Co nanoparticles and a chemical transient kinetics reactor capable of measurements under non‐steady‐state conditions. Co nanoparticles of 4.3 nm and 9.5 nm diameters were synthesized and tested under atmospheric pressure conditions and H 2 /CO=2. Large differences in carbon coverage (Θ C ) were observed for the two catalysts: the 4.3 nm Co catalyst has a Θ C less than one while the 9.5 nm Co catalyst supports a Θ C greater than two. The monomer units present on the surface during reaction are identified as single carbon species for both sizes of Co nanoparticles, and the major CO dissociation site is identified as the B 5 ‐B geometry. The difference in activity of Co nanoparticles was found to be a result of the structure sensitivity caused by the loss of these specific types of sites at smaller nanoparticle sizes.

How to cite this publication

Walter T. Ralston, Gérôme Melaet, Tommy Saephan, Gabor Somorjai (2017). Evidence of Structure Sensitivity in the Fischer–Tropsch Reaction on Model Cobalt Nanoparticles by Time‐Resolved Chemical Transient Kinetics. , 56(26), DOI: https://doi.org/10.1002/anie.201701186.

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Publication Details

Type

Article

Year

2017

Authors

4

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1002/anie.201701186

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