Publications of Margot Lübke

Journal Article (8)

Journal Article
F. Plenge, H. Varela, M. Lübke and K. Krischer: Quantitative modeling of the oscillatory electrooxidation of hydrogen on Pt in the presence of poisons. Zeitschrift für Physikalische Chemie 217 (4), 365–381 (2003).
Journal Article
R. González-García, R. Rico-Martínez, W. Wolf, M. Lübke, M. Eiswirth, J.S. Anderson and I.G. Kevrekidis: Characterization of a two-parameter mixed-mode electrochemical behavior regime using neural networks. Physica D 151 (1), 27–43 (2001).
Journal Article
G. Flätgen, S. Wasle, M. Lübke, C. Eickes, G. Radhakrishnan, K. Doblhofer and G. Ertl: Autocatalytic mechanism of H2O2 reduction on Ag electrodes in acidic electrolyte: experiments and simulations. Electrochimica Acta 44 (25), 4499–4506 (1999).
Journal Article
P. Strasser, M. Lübke, C. Eickes and M. Eiswirth: Modeling galvanostatic potential oscillations in the electrocatalytic iodate reduction system. Journal of Electroanalytical Chemistry 462 (1), 19–33 (1999).
Journal Article
R. González-García, R. Rico-Martínez, W. Wolf, M. Lübke and M. Eiswirth: Caracterizacion de sistemas no-lineales mediante redes neuronales - Estudio de una reaccion electroquimica. Ingeniería Química 30 (345), 173–184 (1998).
Journal Article
P. Strasser, M. Lübke, P. Parmananda, M. Eiswirth and G. Ertl: Mechanistic Analysis of Electrochemical Oscillators Using Derivative Feedback Control Techniques. The Journal of Physical Chemistry B 102 (17), 3227–3237 (1998).
Journal Article
P. Strasser, M. Lübke, F. Raspel, M. Eiswirth and G. Ertl: Oscillatory instabilities during formic acid oxidation on Pt(100), Pt(110) and Pt(111) under potentiostatic control. I. Experimental. The Journal of Chemical Physics 107 (3), 979–990 (1997).
Journal Article
K. Krischer, M. Lübke, W. Wolf, M. Eiswirth and G. Ertl: Chaos and Interior Crisis in an Electrochemical Reaction. Berichte der Bunsen-Gesellschaft 95 (7), 820–823 (1991).

Conference Paper (1)

Conference Paper
K. Doblhofer, S. Wasle, M. Lübke and C. Eickes: Reaktionswege bei der kathodischen Reduktion von H2O2 an Ag-Elektroden. In: Elektrochemische Reaktionstechnik und Synthese: von den Grundlagen bis zur industriellen Anwendung. (Eds.): J. Russow, G. Sandstede, and R. Staab. Ges. Deutscher Chemiker, Frankfurt am Main, 40–46 (1998).
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