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Number of items: 12.

Tarnawski, Z. ; Zakrzewska, K. ; Kim-Ngan, N.-T. H. ; Krupska, M. ; Sowa, S. ; Drogowska, K. ; Havela, L. ; Balogh, A. G. (2015):
Study of Ti, V and Their Oxides-Based Thin Films in the Search for Hydrogen Storage Materials.
In: Acta Physica Polonica A, 128 (2), pp. 431-440. ISSN 0587-4246, 1898-794X,
[Article]

Tarnawski, Z. ; Zakrzewska, K. ; Kim-Ngan, N.-T. H. ; Krupska, M. ; Sowa, S. ; Drogowska, K. ; Havela, L. ; Balogh, A. G. (2015):
Hydrogen storage in Ti, V and their oxides-based thin films.
In: Advances in Natural Sciences: Nanoscience and Nanotechnology, 6 (1), pp. 013002. IOP Publishing, ISSN 2043-6262,
[Article]

Tarnawski, Z. ; Kim-Ngan, Nhu-T. H. ; Zakrzewska, K. ; Drogowska, K. ; Brudnik, A. ; Balogh, A. G. ; Kuzel, R. ; Havela, L. ; Sechovsky, V. (2013):
Hydrogen storage in Ti-TiO2 multilayers.
In: Advances in Natural Sciences: Nanoscience and Nanotechnology, 4 (2), pp. 025004. [Article]

Drogowska, K. ; Flege, Stefan ; Becker, H.-W. ; Tarnawski, Z. ; Zakrzewska, K. ; Balogh, A. G. (2013):
Physical properties of multilayer thin films of Ti-V and their hydrides studied by ion beam analysis methods.
1, In: Nanotechnology 2013: Advanced Materials, CNTs, Particles, Films and Composites, pp. 124-127, CRC Press, ISBN 978-1-4822-0581-7,
[Book Section]

Lyson-Sypien, B. ; Czapla, A. ; Lubecka, M. ; Kusior, E. ; Zakrzewska, K. ; Radecka, M. ; Kusior, A. ; Balogh, A. G. ; Lauterbach, S. ; Kleebe, H.-J. (2013):
Gas sensing properties of TiO2-SnO2 nanomaterials.
In: Sensors and Actuators B: Chemical, 187, pp. 445-454. Elsevier, ISSN 0925-4005,
DOI: 10.1016/j.snb.2013.01.047,
[Article]

Drogowska, K. ; Tarnawski, Z. ; Brudnik, A. ; Kusior, E. ; Sokolowski, M. ; Zakrzewska, K. ; Reszka, A. ; Kim-Ngan, N.-T. H. ; Balogh, A. G. (2012):
RBS, XRR and optical reflectivity measurements of Ti-TiO2 thin films deposited by magnetron sputtering.
In: Materials Research Bulletin, 47 (2), pp. 296-301. Elsevier Science Publishing Company, [Article]

Lyson-Sypien, B. ; Czapla, A. ; Lubecka, M. ; Zakrzewska, K. ; Radecka, M. ; Kusior, A. ; Balogh, A. ; Lauterbach, S. ; Kleebe, H.-J. (2012):
Gas sensing properties of TiO2 - SnO2 nanomaterials.
In: 14th International Meeting on Chemical Sensors, pp. 1611-1614, AMA Association for Sensor Technology, ISBN 978-3-9813484-2-2,
[Book Section]

Drogowska, K. ; Flege, Stefan ; Schmitt, C. ; Rogalla, D. ; Becker, H.-W. ; Nhu-Tarnawska, H. K. N. ; Brudnik, A. ; Tarnawski, Z. ; Zakrzewska, K. ; Marszalek, M. ; Balogh, A. G. (2012):
Hydrogen Charging Effects in Pd/Ti/TiO2/Ti Thin Films Deposited on Si(111) Studied by Ion Beam Analysis Methods.
In: Advances in Materials Science and Engineering, 2012, pp. 269603-1-269603-8. Hindawi Publishing Corporation, [Article]

Radecka, M. ; Pamula, E. ; Trenczek-Zajac, A. ; Zakrzewska, K. ; Brudnik, A. ; Kusior, E. ; Kim-Ngan, N.-T. H. ; Balogh, A. G. (2011):
Chemical composition, crystallographic structure and impedance spectroscopy of titanium oxynitride TiNxOy thin films.
In: Solid State Ionics, 192 (1), pp. 693-698. Elsevier Science Publishing Company, [Article]

Lyson, B. ; Gwizdz, P. ; Czapla, A. ; Lubecka, M. ; Zakrzewska, K. ; Biernacka, K. ; Radecka, M. ; Michalow-Mauke, K. ; Graule, T. ; Balogh, A. G. ; Lauterbach, S. ; Kleebe, H.-J. (2011):
TiO2: Cr nanopowders for hydrogen sensing.
In: Procedia Engineering, 25 (0), pp. 749-752. [Article]

Drogowska, K. ; Kim-Ngan, N.-T. H. ; Balogh, A. G. ; Radecka, M. ; Brudnik, A. ; Zakrzewska, K. ; Tarnawski, Z. (2010):
Diffusion and chemical composition of TiNxOy thin films studied by Rutherford Backscattering Spectroscopy.
In: Surface Science, 604 (11-12), pp. 1010-1014. Elsevier Science Publishing Company, [Article]

Edelmann, F. ; Hahn, H. ; Seifried, S. ; Alof, S. ; Hoche, H. ; Balogh, Adam G. ; Werner, P. ; Zakrzewska, K. ; Radecka, M. ; Pasierb, P. ; Chack, A. ; Mikhelashvili, V. ; Eisenstein, G. (2000):
Structural evolution of SnO2-TiO2 nanocrystalline films for gas sensors.
In: Materials Science and Engineering B, 69, pp. 386-391. [Article]

This list was generated on Sat May 14 12:02:00 2022 CEST.