| 2013 | Katarzyna Miśków, Aleksander Krupski: Properties of ultrathin Pb layers on the Ni3Al (111) face.. In: Appl. Surf. Sci., 2013, 554-561 |
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| 2012 | Marco Moors, Séverine Le Moal, Jan Markus Essen, Christian Breinlich, Maria Kesting, Stefan Degen, Aleksander Krupski, Conrad Becker, Klaus Wandelt: Bimetallic alloys as model systems for the growth of ultrathin metal oxide films.. In: Frontiers in Electronic Materials: A Collection of Extended Abstracts of the Nature Conference Frontiers in Electronic Materials. Nanosession: Scanning Probe Microscopy on Oxides, 2012, 181-183 |
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| 2011 | J. Haubrich, D. Loffreda, F. Delbecq, P. Sautet, Y. Jugnet, ALEKSANDER KRUPSKI, C. Becker, K. Wandelt, 'Mechanistic and Spectroscopic Identification of initial Reaction Intermediates for Prenal Decomposition on a Platinum Model Catalyst.'. In: Physical Chemistry Chemical Physics, 2011, 6000-6009 |
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| 2011 | ALEKSANDER KRUPSKI: Growth of Sn on Mo(110) studied by AES and STM. . In: Surf. Sci., 2011, 1291-1297 |
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| 2011 | ALEKSANDER KRUPSKI: Scanning tunneling microscopy study of Au growth on Mo(110).. In: Surf. Sci., 2011, 424-428 |
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| 2010 | ALEKSANDER KRUPSKI: Ag on Mo(110) studied by AES and STM.. In: Surf. Sci., 2010, 1179-1184 |
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| 2010 | T. Kobiela, M. Moors, W. Linhart, I. Cebula, ALEKSANDER KRUPSKI, C. Becker and K. Wandelt, Characterization of bimetallic Au-Pt(111) surfaces.. In: Thin Solid Films, 2010, 3650-3657 |
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| 2010 | M. Jiang, E. Sak, K. Gentz, ALEKSANDER KRUPSKI, K. Wandelt, Redox activity and structural transition of heptyl viologen adlayers on a Cu(100).. In: ChemPhysChem, 2010, 1542-1549 |
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| 2010 | ALEKSANDER KRUPSKI, Danuta Serwotka, Adam Wójtowicz: Nowoczesne kompedium fizyki.. PWN, 2010 |
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| 2009 | ALEKSANDER KRUPSKI: Pb on Mo(110) surface studied by scanning tunnelling microscopy.. In: Phys. Rev. B, 2009, 0354241-0354245 |
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| 2009 | J. Haubrich, D. Loffreda, F. Delbecq, P. Sautet, ALEKSANDER KRUPSKI, C. Becker, K. Wandelt, 'Adsorption of ,-unsaturated Aldehydes on Pt(111) and Pt-Sn alloys: II. Crotonaldehyde.'. In: Journal of Physical Chemistry C, 2009, 13947-13967 |
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| 2009 | K. Kośmider, ALEKSANDER KRUPSKI, P. Jelinek, and L. Jurczyszyn,: Atomic structure and electronic properties of Pb on Mo(110).. In: Phys. Rev. B, 2009, 1154241-1154247 |
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| 2008 | J. Haubrich, D. Loffreda, F. Delbecq, P. Sautet, Y. Jugnet, ALEKSANDER KRUPSKI, C. Becker, K. Wandelt, 'Adsorption and vibrations of A,B-unsaturated aldehydes on pure Pt and Pt-Sn alloy (111) aurfaces I. Prenal.'. In: Journal of Physical Chemistry C, 2008, 3701-3718 |
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| 2008 | M. Moors, T. Kobiela, ALEKSANDER KRUPSKI, T. Pertram, M. Kralj, C. Becker, K. Wandelt,: ,,Surface Charcterization by means of Photoemission of Adsorbed Xenon (PAX): Comparsion of Au-Pt and Au-Pd surfaces.. In: Acta Physica Polonica A, 2008, 77-92 |
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| 2008 | O. Kurnosikov, L. Jurczyszyn, B. Pieczyrak, ALEKSANDER KRUPSKI: Atomic structure and electronic properties of Ni3Al (001) surface. . In: Surf. Sci., 2008, 2994-2999 |
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| 2008 | M. Moors, ALEKSANDER KRUPSKI, S. Degen, M. Kralj, C. Becker, K. Wandelt, Scanning tunneling microscopy and spectroscopy investigations of Cu-phthalocyanine molecules on Al2O3/Ni3Al(111) surface.. In: Appl. Surf. Sci., 2008, 4251-4257 |
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| 2008 | M. Kralj, T. Pertram, ALEKSANDER KRUPSKI, C. Becker, K. Wandelt, N. Seriani, and F. Mittendorfer, The Pd(110) surface oxide structures investigated by STM and DFT.. In: Surf. Sci., 2008, 3706-3713 |
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| 2007 | L. Jurczyszyn, ALEKSANDER KRUPSKI, S. Degen, B. Pieczyrak, M. Kralj, C. Becker, K. Wandelt, Atomic structure and electronic properties of Ni3Al(111) and (011) surfaces.. In: Phys. Rev. B, 2007, 04510101-04510110 |
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| 2007 | ALEKSANDER KRUPSKI: Isothermal desorption of Pb layers from Ni(111) face.. In: Annales de Chimie, 2007, 395-400 |
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| 2006 | ALEKSANDER KRUPSKI: Debye temperature of the Pb layers on Ni(111) .. In: phys. stat. sol. (b), 2006, 467-472 |
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| 2006 | Jan Haubrich, David Loffreda, Françoise Delbecq, Yvette Jugnet, Philippe Sautet, ALEKSANDER KRUPSKI, Conrad Becker and Klaus Wandelt, Determination of the Crotonaldehyde Structures on Pt and PtS Alloy Surfaces from a Combined Experimental and Theoretical Study.. In: Chem. Phys. Lett., 2006, 188-192 |
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| 2006 | A. Lehnert, ALEKSANDER KRUPSKI, S. Degen, K. Franke, S. Decker, S. Rusponi, M. Kralj, C. Becker, H Brune, K. Wandelt, Nucleation of ordered Fe islands on Al2O3/Ni3Al(111).. In: Surf. Sci., 2006, 1804-1808 |
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| 2006 | M. Kralj, A. Bailly, M.-C. Saint-Lager, S. Degen, ALEKSANDER KRUPSKI, C. Becker, P. Dolle, M. De Santis, and K. Wandelt, Temperature and coverage-dependent evolution of the Au/Pd(110) surface structure.. In: Surf. Sci., 2006, 2614-2622 |
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| 2005 | S. Degen, ALEKSANDER KRUPSKI, M. Kralj, A. Langner, C. Becker, M. Sokolowski and K. Wandelt: Determination of the coincidence lattice of an ultra thin Al2O3 layer on Ni3Al(111).. In: Surf. Sci., 2005, L57-L64 |
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| 2005 | ALEKSANDER KRUPSKI, M. Nowicki: Investigations of Pb/Ni(111) using incident beam electron diffraction.. In: Surf. Sci., 2005, 147-153 |
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| 2005 | ALEKSANDER KRUPSKI: Directional Auger electron spectroscopy and single-scattering cluster calculations study of the Ni(111)-Pb system.. In: Phys. Rev. B, 2005, 1254261-1254265 |
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| 2003 | S. Mroz, M. Nowicki, ALEKSANDER KRUPSKI: Directional elastic peak electron spectroscopy: theoretical description and review of applications. In: Progress in Surface Science, 2003, 109-123 |
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| 2003 | ALEKSANDER KRUPSKI, S. Mroz: LEED investigation of the Pb and Sb ultrathin layers deposited on Ni(111) face at T=150-900K.. In: Surface Review and Letters, 2003, 1-8 |
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| 2003 | ALEKSANDER KRUPSKI, S. Mroz: Properties of ultrathin Sb layers on the Ni(111) face. In: Surface Review and Letters, 2003, 65-72 |
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| 2002 | Aleksander Krupski, S. Mroz: Properties of ultrathin Pb layers on the Ni(111) face. In: Physical Review B, 2002, 035411-035414 |
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| 2001 | S. Mroz, Aleksander Krupski: Composition of the first two atomic layers in Au0.2Cu0.8 and Au0.8Cu0.2 alloys. In: Vacuum, 2001, 307-313 |
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| 2000 | H. Otop, S. Mroz, A. Mroz, ALEKSANDER KRUPSKI: Design and parameters of home made sample holders enabling the alignement, rotations, heating and cooling of the samples in ultra-high vacuum. In: Electron Technology, 2000, 437-442 |
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