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Catalytic Descriptor Exploration for Ru-Based Fischer-Tropsch Catalysts: Effect of Chlorine and Sulfur Addition. | LitMetric

Catalytic Descriptor Exploration for Ru-Based Fischer-Tropsch Catalysts: Effect of Chlorine and Sulfur Addition.

J Phys Chem Lett

Guizhou Provincial Key Laboratory of Computational Nano-Material Science, Institute of Applied Physics, Guizhou Education University, Guiyang, Guizhou 550018, China.

Published: September 2022

AI Article Synopsis

  • Catalytic descriptor exploration is becoming crucial in designing catalysts, focusing on Ru-based catalysts to understand their structure-activity relationships.
  • Calculations show that a specific reaction path involving HCO*- is favored due to two active sites, while the presence of Cl boosts hydrocarbon production and S reduces it.
  • A total of 42 structure-activity relationships were analyzed, indicating that charge transfer and average charge differences of Ru atoms are good indicators of reactant binding stability, whereas Gibbs free energy is a better indicator of reactivity, with differing correlations observed between dissociation and hydrogenation steps.

Article Abstract

As an important factor in the design of catalysts, catalytic descriptor exploration has emerged as a novel frontier in heterogeneous catalysis. Here, the underlying structure-activity relationships of Ru-based catalysts are theoretically studied to shed light on this area. Calculations of different competing reaction paths suggest that the HCO*-mediated path─because of two synergistic active sites─is more favorable than others. In addition, compared to unadulterated Ru catalysts, the presence of Cl enhances the hydrocarbon production, whereas the presence of S decreases it. After a systematic examination of a series of structure-activity relationships (42 in total), we found that both charge transfer and average charge difference of active Ru atoms are good descriptors for the binding stability of reactants. However, for reactivity the Gibbs free energy of the reactants performs better. More interestingly, due to the quite different catalytic processes of the dissociation and hydrogenation steps, their correlations have opposite slopes.

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Source
http://dx.doi.org/10.1021/acs.jpclett.2c02678DOI Listing

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