Publications of Michael Hävecker

Poster (23)

2001
Poster
Mayer, Ralf W., Michael Hävecker, Axel Knop-Gericke and Robert Schlögl: Ammonia oxidation over copper investigated with in situ NEXAFS spectroscopy in the soft X-ray range.
(75th Bunsen Dicussion Meeting, Berlin, Mar 2001).
Poster
Ogletree, D.Frank, Felix G. Requejo, Charles S. Fadley, Zahid Hussain, Miquel Salmeron, Hendrik Bluhm, Axel Knop-Gericke, Michael Hävecker and Robert Schlögl: High-pressure XPS: a new tool for environmental science and catalysis.
(12th International Conference on Vacuum Ultraviolet Radiation Physics, Trieste, Jul 2001).
2000
Poster
Mayer, Ralf W., Michael Hävecker, Axel Knop-Gericke, Fred Senf and Robert Schlögl: Investigation of the ammonia oxidation over copper with in situ NEXAFS spectroscopy: Influence of the copper oxide on the reaction products.
(BESSY Users Meeting, Berlin, Dec 2000).
Poster
Vinogradov, Alexander S., Alexeij B. Preobrajenski, Axel Knop-Gericke, Sergeij L. Molodtsov, Sergeij A. Krasnikov, S.V. Nekipelov, Rüdiger Szargan, Michael Hävecker and Robert Schlögl: Observation of the back-donation in 3d metal cyanide complexes through N K absorption spectra.
(8th International Conference on Electronic Spectroscopy & Structure, Berkeley, Aug 2000).
1999
Poster
Böttger, Ingolf, Olaf Timpe, Reiner Gottschall, Michael Hävecker, Thomas Schedel-Niedrig and Robert Schlögl: Catalytic Methanol Oxidation over Copper: Observation of Reaction-induced nanoscale Restructuring by Means of in situ Time-Resolved X-ray Absorption Spectroscopy.
(Bunsentagung, Dortmund, Germany, May 1999).

Thesis - PhD (1)

2000
Thesis - PhD
Hävecker, Michael: Untersuchung der Methanoloxidation über Kupfer(poly) mittels Hochdruck-in-situ Röntgenabsorptionsspektroskopie im weichen Energiebereich von 200 eV bis 1000 eV.

Working Paper (1)

2022
Working Paper
Sandoval Diaz, Luis, Daniel Cruz, Thomas Götsch, Milivoj Plodinec, Adnan Hammud, Danail Ivanov, Michael Hävecker, Robert Schlögl, Axel Knop-Gericke and Thomas Lunkenbein: In situ genesis of selective adsorption sites by complex catalytic redox dynamics.
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