Concentration- and temperature- driven transformation of crystal and magnetic structure in Bi1-xSmxFeO3 ceramics

PID

The compounds Bi1-xSmxFeO3 exhibit concentration- driven transition from the polar rhombohedral phase to the anti-polar orthorhombic one and temperature- driven transition into the non-polar orthorhombic phase. The compounds having the compositions corresponding to the phase boundary region between the polar rhombohedral and anti-polar orthorhombic phases (0.1 < x < 0.14) are characterized by most pronounced magnetic and electromechanical properties due to metastable structural and magnetic states. These compounds exposed to the temperature- driven structural transition are characterized by a time-lag of about two-three days attributed to the structural relaxation process as compared to the immediate modification occurred in the magnetic state. This unusual feature allows to clarify a correlation between the crystal structure and magnetic state using temperature neutron diffraction measurements.

Identifier
PID https://hdl.handle.net/21.11151/upa5-rbxl
Related Identifier IsCompiledBy https://doi.org/10.5442/NI000002
Metadata Access https://data.helmholtz-berlin.de/oaipmh/request?verb=GetRecord&metadataPrefix=oai_datacite&identifier=oai:data.helmholtz-berlin.de:inv/7352
Provenance
Instrument E9 - Fine Resolution Powder Diffractometer (FIREPOD),
Publisher Helmholtz-Zentrum Berlin für Materialien und Energie
Contributor Sikolenko, Vadim; Efimov, Vadim; Khomchanka, Uladzimir; Karpinski, Dzmitry; Helmholtz-Zentrum Berlin für Materialien und Energie
Publication Year 2023
Rights Creative Commons Zero v1.0 Universal; https://creativecommons.org/publicdomain/zero/1.0/
OpenAccess true
Representation
Resource Type Investigation; Collection
Size 678.31 MiB
Discipline Other
Temporal Coverage Begin 2018-07-03T08:36:44Z
Temporal Coverage End 2018-12-17T07:00:00Z