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The precision determination of the lattice parameters and the coefficients of thermal expansion of BiFeO<sub>3</sub>
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1972
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Magnetic PropertiesEngineeringSolid-state ChemistryMagnetic MaterialsMagnetismMultiferroicsPrecision DeterminationFerroelectric ApplicationSuperconductivityThermal AnalysisThermodynamicsLattice ParametersMaterials SciencePhysicsHexagonal ParametersStraumanis MethodNatural SciencesCondensed Matter PhysicsApplied PhysicsAngular SeparationThermal EngineeringThermal PropertyThermal Expansion
The lattice parameters of BiFeO3 were determined with the Straumanis method. At 25–13±0.02 °C, the hexagonal parameters are ah = 5.5799±0.0003, and ch = 13.8670±0.0005 Å. The temperature dependence of the lattice parameters in the range 20–325 °C is given by the equations: ah = 5.5764 Å + 6.06 × 10−5t, and ch = 13.8620 Å + 2.10 × 10−4t. In the range of 344–838 °C, the lattice parameters obey the following equations: ah = 5.5946 + 6.83 × 10−5 t, and ch = 13.7251 + 9.05 × 10−4 t −12.503 × 10−7 t2 + 9.40 × 10−10 t3 − 3.57 × 10−13 t4. By extrapolation of the angular separation of the 11.0 and the 10.4 reflections, the electrical Curie temperature was determined to be 845±5 °C.