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  1. Article

    Open Access

    Subtle Nanostructuring of the Au/Ru(0001) Surface

    We report on a scanning tunneling microscopy (STM) study of the nanostructuring of the Au/Ru(0001) thin film system for the cases of 5 monolayers (ML) and 9 ML of Au deposited at 300 K and subsequently anneale...

    A. Goriachko, H. Over in Nanoscale Research Letters (2018)

  2. Article

    Open Access

    The Nanostructuring of Atomically Flat Ru(0001) upon Oxidation and Reduction

    The O/Ru(0001) system is widely studied due to its rich phase variety of various stoichiometry and atomic arrangements, including the formation of a RuO2/Ru(0001) oxide layer. Apart from homogeneous ruthenium sur...

    A. Goriachko, H. Over in Nanoscale Research Letters (2016)

  3. No Access

    Article

    Stable and Active Mixed Zr–Ce Oxides for Catalyzing the Gas Phase Oxidation of HCl

    Electrospun mixed Zr1−x Ce x O2 nanofibers were used to assess both the activity in the Deacon process and the morphological stability of these mod...

    S. Urban, N. Tarabanko, C. H. Kanzler, K. Zalewska-Wierzbicka in Catalysis Letters (2013)

  4. No Access

    Chapter

    3.4.2 Adsorption of C, N, and O on metal surfaces

    This document is part of Part 4 'Adsorbate Species on Surfaces and Adsorbate-Induced Surface Core Level Shifts' of Subvolume A 'Adsorbate Layers on Surfaces' of Volume 42 'Physics of Covered Solid Surfaces' of...

    H. Over in Adsorbed Layers on Surfaces (2005)

  5. No Access

    Article

    Ruthenium dioxide, a fascinating material for atomic scale surface chemistry

    Over the past few years, RuO2 has developed into one of the best-characterized late transition metal oxides in surface science, revealing unique and promising redox properties. The CO oxidation reaction over RuO2

    H. Over in Applied Physics A (2002)

  6. No Access

    Article

    Identification of RuO2 as the active phase in CO oxidation on oxygen-rich ruthenium surfaces

    CO oxidation over ruthenium dioxide (RuO2) dominates the CO/CO2 conversion rate over the catalytically active oxygen-rich Ru(0001) surfaces. In sharp contrast, chemisorbed O overlayers on Ru(0001) (with and witho...

    Y.D. Kim, H. Over, G. Krabbes, G. Ertl in Topics in Catalysis (2000)