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Johan Gustafson

Researcher at Lund University

Publications -  121
Citations -  4618

Johan Gustafson is an academic researcher from Lund University. The author has contributed to research in topics: Oxide & Catalysis. The author has an hindex of 34, co-authored 119 publications receiving 4076 citations. Previous affiliations of Johan Gustafson include University of St Andrews & Brno University of Technology.

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Kinetic hindrance during the initial oxidation of Pd(100) at ambient pressures

TL;DR: A strong kinetic hindrance to the bulk oxide formation is identified even at temperatures as high as 675 K, compared to first-principles atomistic thermodynamics.
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Self-limited growth of a thin oxide layer on Rh(111).

TL;DR: The oxidation of the Rh(111) surface at oxygen pressures from 10(-10) mbar to 0.5 bar and temperatures between 300 and 900 K produces a trilayer O-Rh-O surface oxide which, although not thermodynamically stable, prevents further oxidation at intermediate pressures.
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The Pd(100)-(root 5 x root 5)R27 degrees-O surface oxide revisited

TL;DR: In this paper, the Pd(100)-R27degrees-O surface oxide phase was analyzed using core-level spectroscopy, scanning tunneling microscopy and density functional theory calculations.
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The Active Phase of Palladium during Methane Oxidation.

TL;DR: In this paper, density functional theory and in situ surface X-ray diffraction are used to identify and characterize atomic sites yielding high methane conversion and reveal facile dissociation on either under-coordinated Pd sites in PdO(101) or metallic surfaces.
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The Pd(100)-(SQRT(5) x SQRT(5) R27^o)-O surface oxide revisited

TL;DR: In this article, the Pd(100)-(SQRT(5) x SQRT (5) R27^o)-O surface oxide phase was analyzed by combining high-resolution core-level spectroscopy (HRCLS), scanning tunneling microscopy (STM) and density functional theory (DFT) calculations.