4.8 Article

A Common Single-Site Pt(II)-O(OH)x- Species Stabilized by Sodium on Active and Inert Supports Catalyzes the Water-Gas Shift Reaction

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 137, Issue 10, Pages 3470-3473

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja513292k

Keywords

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Funding

  1. Department of Energy/Basic Energy Science [DE-FG02-05ER15730]
  2. Advanced Photon Source at Argonne National Laboratory [DE-AC02-06CH11357]
  3. U.S. Department of Energy, Office of Energy Efficiency and Renewable Energy, Vehicle Technologies Office, Propulsion Materials Program
  4. USyd Early Career Researcher Scheme

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While it has long been known that different types of support oxides have different capabilities to anchor metals and thus tailor the catalytic behavior, it is not always clear whether the support is a mere carrier of the active metal site, itself not participating directly in the reaction pathway. We report that catalytically similar single-atom-centric Pt sites are formed by binding to sodium ions through -O ligands, the ensemble being equally effective on supports as diverse as TiO2, L-zeolites, and mesoporous silica MCM-41. Loading of 0.5 wt % Pt on all of these supports preserves the Pt in atomic dispersion as Pt(II), and the Pt-O(OH)(x)- species catalyzes the water-gas shift reaction from similar to 120 to 400 degrees C. Since the effect of the support is indirect, these findings pave the way for the use of a variety of earth-abundant supports as carriers of atomically dispersed platinum for applications in catalytic fuel-gas processing.

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