Weidenkaff, A.

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Number of items: 7.

Journal Article

Logvinovich, D.; Hejtmánek, J.; Mary ko, M.; Homazava, N.; Tomes, P.; Aguiar, R.; Ebbinghaus, S.G.; Reller, A.; Weidenkaff, A. (2009). On the magnetic properties of SrMoO2N. Journal of applied physics, 105(2), p. 23522. Melville, N.Y.: American Institute of Physics 10.1063/1.3067755

Marozau, I.; Shkabko, A.; Dinescu, G.; Döbeli, M.; Lippert, T.; Logvinovich, D.; Weidenkaff, A.; Wokaun, A. (2009). Pulsed laser deposition and characterisation of nitrogen-substituted SrTiO3 thin films. Applied surface science, 255(10), pp. 5252-5255. Amsterdam: North-Holland 10.1016/j.apsusc.2008.07.159

Shkabko, A.; Aguirre, M. H.; Marozau, I.; Lippert, T.; Weidenkaff, A. (2009). A. Resistance switching at the Al/SrTiO3-xNy anode interface. Applied physics letters, 94(21), p. 212102. Melville, N.Y.: American Institute of Physics 10.1063/1.3139761

Shkabko, A.; Aguirre, M. H.; Marozau, I.; Lippert, T.; Chou, Y-S.; Douthwaite, R.; Weidenkaff, A. (2009). Synthesis and transport properties of SrTiO3-xNy/SrTiO3-delta layered structures produced by microwave-induced plasma nitridation. Journal of applied physics, 42(14), p. 145202. Melville, N.Y.: American Institute of Physics 10.1088/0022-3727/42/14/145202

Shkabko, A.; Aguirre, M.H.; Marozau, I.; Lippert, T.; Weidenkaff, A. (2009). Measurements of current-induced heating in an Al/SrTiO3-xNy/Al memristor during electroformation and resistance switching. Applied physics letters, 59(15), p. 152109. Melville, N.Y.: American Institute of Physics 10.1063/1.3238563

Aguirre, M.H.; Shkabko, A.; Bocher, L.; Weidenkaff, A.; Wang, P.; Bangert, U. (2009). HAADF-STEM and EELS study of SrTiO3-x:Ny obtained by microwave plasma ammonolysis. Materials science, 3, pp. 339-340. Wrocław: Technical University of Wrocław

Book Section

Weidenkaff, A.; Aguirre, M.; Bocher, L.; Trottmann, M.; Robert, R. (2009). The Development of thermoelectric oxides with perovskite-type structure for alternative energy technologies. In: Salem, Jonathan; Zhu, Dongming (eds.) Advances in Electronic Ceramics: Ceramic Engineering and Science Proceedings, Volume 28, Issue 8 (pp. 151-160). Chichester: John Wiley & Sons

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