Publications of Young Dok Kim

Journal Article (9)

Journal Article
S. Wendt, A.P. Seitsonen, Y.D. Kim, M. Knapp, H. Idriss and H. Over: Complex redox chemistry on the RuO2(110) surface: experiment and theory. Surface Science 505 (1-3), 137–152 (2002).
Journal Article
A.P. Seitsonen, Y.D. Kim, M. Knapp, S. Wendt and H. Over: CO adsorption on the reduced RuO2(110) surface: Energetics and structure. Physical Review B 65 (3), 035413 (2002).
Journal Article
H. Madhavaram, H. Idriss, S. Wendt, Y.D. Kim, M. Knapp, H. Over, J. Aßmann, E. Löffler and M. Muhler: Oxidation reactions over RuO2: A comparative study of the reactivity of the (110) single crystal and polycrystalline surfaces. Journal of Catalysis 202 (2), 296–307 (2001).
Journal Article
Y.D. Kim, A.P. Seitsonen, S. Wendt, J. Wang, C.Y. Fan, K. Jacobi, H. Over and G. Ertl: Characterization of various oxygen species on an oxide surface: RuO2(110). The Journal of Physical Chemistry B 105 (18), 3752–3758 (2001).
Journal Article
Y.D. Kim, A.P. Seitsonen and H. Over: Adsorption characteristics of CO and N2 on RuO2(110). Physical Review B 63 (11), 115419 (2001).
Journal Article
Y.D. Kim, S. Schwegmann, A.P. Seitsonen and H. Over: Epitaxial Growth of RuO2(100) on Ru(10-10): Surface Structure and Other Properties. The Journal of Physical Chemistry B 105 (11), 2205–2211 (2001).
Journal Article
Y.D. Kim, H. Over, G. Krabbes and G. Ertl: Identification of RuO2 as the active phase in CO oxidation on oxygen-rich ruthenium surfaces. Topics in Catalysis 14 (1-4), 95–100 (2001).
Journal Article
Y.D. Kim, S. Schwegmann and H. Over: The atomic geometries of Cs and K adsorbed on Pd(111): the important role of the ionization potential of the substrate for the bonding. Physical Chemistry Chemical Physics 1 (8), 2001–2005 (1999).
Journal Article
Y.D. Kim, S. Wendt, S. Schwegmann, H. Over and G. Ertl: Structural analyses of the pure and cesiated Ru(0001)–(2×2)-3O phase. Surface Science 418 (1), 267–272 (1998).

Thesis - PhD (1)

Thesis - PhD
Y.D. Kim: Atomic-scale structure and catalytic reactivity of RuO2. Freie Universität Berlin
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