Preparation and X-Ray Diffraction Study of Strongly Oriented Thin Films with Potential Magnetoelectric Effect
ORAL
Abstract
Thin films of M, Y and Z hexagonal ferrites with a potential of magnetoelectric (ME) effect were prepared by chemical solution deposition method and processing parameters were tested and optimized. Several substrates were used, and different substrate/seeding layer/ferrite layer architectures were proposed to get strong preferred grain orientation. The films were studied by X-ray diffraction (XRD), AFM and EBSD. Lattice parameters, out-of-plane and in-plane grain orientations, crystallite sizes, microstrains and residual stresses were obtained by different XRD symmetric and asymmetric scans and their combinations.
New Y-ferrite phases were prepared with the composition BaSrZnCoFe11(Me)O22 (Me = Al, Ga, In, Sc). For Me = Al, Ga the magnetic structure is of non-colinear ferrimagnetic type with unspecified helical magnetic structure.
ME Z-type ferrite Sr3Co2Fe24O41 and BaxSr3-xCo2Fe24O41 thin films were prepared and characterized for the first time. Three present M, S and Z phases showed well out-of-plane and in-plane mutual orientations.
New Y-ferrite phases were prepared with the composition BaSrZnCoFe11(Me)O22 (Me = Al, Ga, In, Sc). For Me = Al, Ga the magnetic structure is of non-colinear ferrimagnetic type with unspecified helical magnetic structure.
ME Z-type ferrite Sr3Co2Fe24O41 and BaxSr3-xCo2Fe24O41 thin films were prepared and characterized for the first time. Three present M, S and Z phases showed well out-of-plane and in-plane mutual orientations.
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Presenters
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Radomir Kuzel
Faculty of Mathematics and Physics, Charles University
Authors
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Radomir Kuzel
Faculty of Mathematics and Physics, Charles University
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Josef Bursik
Institute of Inorganic Chemistry, Czech Academy of Sciences
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Robert Uhrecky
Institute of Inorganic Chemistry, Czech Academy of Sciences
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Miroslav Soroka
Institute of Inorganic Chemistry, Czech Academy of Sciences
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Jan Prokleska
Faculty of Mathematics and Physics, Charles University