Strain Driven Phase Decomposition in Ion-Beam Sputtered Pr1−XCa XMnO3 Films

The deposition of heteroepitaxial thin films on single crystalline substrates by means of physical deposition methods is commonly accompanied by mechanical strain due to lattice mismatch and defect generation. Here we present a detailed analysis of the influence of strain on the Mn solubility of P r...

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Veröffentlicht in:Journal of nanomaterials 2015, Vol.2015 (2015), p.1-12
Hauptverfasser: Mildner, Stephanie, Scherff, Malte, Kramer, Thilo, Hoffmann, Joerg, Ifland, Benedikt, Jooss, Christian
Format: Artikel
Sprache:eng
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Zusammenfassung:The deposition of heteroepitaxial thin films on single crystalline substrates by means of physical deposition methods is commonly accompanied by mechanical strain due to lattice mismatch and defect generation. Here we present a detailed analysis of the influence of strain on the Mn solubility of P r 1 - X C a X M n O 3 thin films prepared by ion-beam sputtering. Combining results from X-ray diffraction, transmission electron microscopy and in situ hot-stage stress measurements, we give strong evidence that large tensile strain during deposition limits the Mn solubility range of the Perovskite phase to near-stoichiometric composition. Mn excess gives rise to MnO z precipitates and the precipitation seems to represent a stress relaxation path. With respect to size and density of the precipitates, the relaxation process can be affected by the choice of substrate and the deposition parameters, that is, the deposition temperature and the used sputter gas.
ISSN:1687-4110
1687-4129
DOI:10.1155/2015/935167