Publications of Igor Kasatkin

Journal Article (28)

2018
Journal Article
C. Rameshan, H. Lorenz, M. Armbrüster, I. Kasatkin, B. Klötzer, T. Götsch, K. Ploner and S. Penner: Impregnated and Co-precipitated Pd–Ga2O3, Pd–In2O3 and Pd–Ga2O3–In2O3 Catalysts: Influence of the Microstructure on the CO2 Selectivity in Methanol Steam Reforming. Catalysis Letters 148 (10), 3062–3071 (2018).
2015
Journal Article
M.B. Fichtl, D. Schlereth, N. Jacobsen, I. Kasatkin, J. Schumann, M. Behrens, R. Schlögl and O. Hinrichsen: Kinetics of deactivation on Cu/ZnO/Al2O3 methanol synthesis catalysts. Applied Catalysis A 502, 262–270 (2015).
Journal Article
S. Kühl, J. Schumann, I. Kasatkin, M. Hävecker, R. Schlögl and M. Behrens: Ternary and quaternary Cr or Ga-containing ex-LDH catalysts—Influence of the additional oxides onto the microstructure and activity of Cu/ZnAl2O4 catalysts. Catalysis Today 246, 92–100 (2015).
2014
Journal Article
M.B. Fichtl, J. Schumann, I. Kasatkin, N. Jacobsen, M. Behrens, R. Schlögl, M. Muhler and O. Hinrichsen: Counting of Oxygen Defects versus Metal Surface Sites in Methanol Synthesis Catalysts by Different Probe Molecules. Angewandte Chemie International Edition 53 (27), 7043–7047 (2014).
Journal Article
M.B. Fichtl, J. Schumann, I. Kasatkin, N. Jacobsen, M. Behrens, R. Schlögl, M. Muhler and O. Hinrichsen: Counting of Oxygen Defects versus Metal Surface Sites in Methanol Synthesis Catalysts by Different Probe Molecules. Angewandte Chemie 126 (27), 7163–7167 (2014).
Journal Article
A. Ota, J. Kröhnert, G. Weinberg, I. Kasatkin, E.L. Kunkes, D. Ferri, F. Girgsdies, N. Hamilton, M. Armbrüster, R. Schlögl and M. Behrens: Dynamic Surface Processes of Nanostructured Pd2Ga Catalysts Derived from Hydrotalcite-Like Precursors. ACS Catalysis 4 (5), 2048–2059 (2014).
Journal Article
S. Kühl, A. Tarasov, S. Zander, I. Kasatkin and M. Behrens: Cu-Based Catalyst Resulting from a Cu,Zn,Al Hydrotalcite-Like Compound: A Microstructural, Thermoanalytical, and In Situ XAS Study. Chemistry - A European Journal 20 (13), 3782–3792 (2014).
Journal Article
T. Kandemir, I. Kasatkin, F. Girgsdies, S. Zander, S. Kühl, M. Tovar, R. Schlögl and M. Behrens: Microstructural and Defect Analysis of Metal Nanoparticles in Functional Catalysts by Diffraction and Electron Microscopy: The Cu/ZnO Catalyst for Methanol Synthesis. Topics in Catalysis 57 (1-4), 188–206 (2014).
Journal Article
G. Wowsnick, D. Teschner, M. Armbrüster, I. Kasatkin, F. Girgsdies, Y. Grin, R. Schlögl and M. Behrens: Surface dynamics of the intermetallic catalyst Pd2Ga, Part II – Reactivity and stability in liquid-phase hydrogenation of phenylacetylene. Journal of Catalysis 309, 221–230 (2014).
Journal Article
G. Wowsnick, D. Teschner, I. Kasatkin, F. Girgsdies, M. Armbrüster, A. Zhang, Y. Grin, R. Schlögl and M. Behrens: Surface dynamics of the intermetallic catalyst Pd2Ga, Part I – Structural stability in UHV and different gas atmospheres. Journal of Catalysis 309, 209–220 (2014).
2013
Journal Article
T. Kandemir, F. Girgsdies, T.C. Hansen, K.-D. Liss, I. Kasatkin, E.L. Kunkes, G. Wowsnick, N. Jacobsen, R. Schlögl and M. Behrens: In-situ-Untersuchung von katalytischen Prozessen bei industriell relevanten Drücken: Neutronenbeugung an einem Methanolsynthesekatalysator. Angewandte Chemie: eine Zeitschrift der Gesellschaft Deutscher Chemiker 125 (19), 5271–5276 (2013).
Journal Article
M. Behrens, G. Lolli, N. Muratova, I. Kasatkin, M. Hävecker, R. Naumann d'Alnoncourt, O. Storcheva, K. Köhler, M. Muhler and R. Schlögl: The effect of Al-doping on ZnO nanoparticles applied as catalyst support. Physical Chemistry Chemical Physics 15 (5), 1374–1381 (2013).
Journal Article
T. Kandemir, F. Girgsdies, T.C. Hansen, K.-D. Liss, I. Kasatkin, E.L. Kunkes, G. Wowsnick, N. Jacobsen, R. Schlögl and M. Behrens: In Situ Study of Catalytic Processes: Neutron Diffraction of a Methanol Synthesis Catalyst at Industrially Relevant Pressure. Angewandte Chemie International Edition 52 (19), 5166–5170 (2013).
2012
Journal Article
A. Ota, E.L. Kunkes, I. Kasatkin, E. Groppo, D. Ferri, B. Poceiro, R.M. Navarro Yerga and M. Behrens: Comparative study of hydrotalcite-derived supported Pd2Ga and PdZn intermetallic nanoparticles as methanol synthesis and methanol steam reforming catalysts. Journal of Catalysis 293, 27–38 (2012).
Journal Article
M. Behrens, F. Studt, I. Kasatkin, S. Kühl, M. Hävecker, F. Abild-Pedersen, S. Zander, F. Girgsdies, P. Kurr, B.-L. Kniep, M. Tovar, R.-W. Fischer, J.K. Nørskov and R. Schlögl: The Active Site of Methanol Synthesis over Cu/ZnO/Al2O3 Industrial Catalysts. Science 336 (6083), 893–897 (2012).
Journal Article
F. Conrad, C. Massué, S. Kühl, E.L. Kunkes, F. Girgsdies, I. Kasatkin, B.S. Zhang, M. Friedrich, Y. Luo, M. Armbrüster, G.R. Patzke and M. Behrens: Microwave-hydrothermal synthesis and characterization of nanostructured copper substituted ZnM2O4 (M = Al, Ga) spinels as precursors for thermally stable Cu catalysts. Nanoscale 4 (6), 2018–2028 (2012).
Journal Article
T. Kandemir, F. Girgsdies, I. Kasatkin, E.L. Kunkes, K.-D. Liss, V.K. Peterson, R. Schlögl and M. Behrens: Heterogeneous Catalysis under pressure - In-situ neutron diffraction under industrial conditions. Journal of Physics: Conference Series 340 (1), 012053 (2012).
2011
Journal Article
M. Behrens, S. Kißner, F. Girgsdies, I. Kasatkin, F. Hermerschmidt, K. Mette, H. Ruland, M. Muhler and R. Schlögl: Knowledge-based development of a nitrate-free synthesis route for Cu/ZnO methanol synthesis catalysts via formate precursors. Chemical Communications 47 (6), 1701–1703 (2011).
Journal Article
A. Ota, M. Armbrüster, M. Behrens, D. Rosenthal, M. Friedrich, I. Kasatkin, F. Girgsdies, W. Zhang, R. Wagner and R. Schlögl: The Intermetallic Compound Pd2Ga as Selective Catalyst for the Semi-Hydrogenation of Acetylene: From Model to High Performance Systems. Journal of Physical Chemistry C 115, 1368–1374 (2011).
2010
Journal Article
M. Behrens, A. Furche, I. Kasatkin, A. Trunschke, W. Busser, M. Muhler, B. Kniep, R. Fischer and R. Schlögl: The Potential of Microstructural Optimization in Metal/Oxide Catalysts: Higher Intrinsic Activity of Copper by Partial Embedding of Copper Nanoparticles. ChemCatChem 2 (7), 816–818 (2010).
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