International audienceThe Aurivillius layered compounds with predominant fraction of paramagnetic transition metals are an emerging playground for discovery of magnetoelectric or multiferroic compounds. This aim was recently achieved by incorporating Fanions in the perovskite layer of the (Bi2O2)(CoF4) compound, only described so-far in a disordered model (unit cell : ap, ap, c). Here we report the investigation on the representative compounds (Bi2O2)(MF4) (M = Fe, Ni) using single crystal, synchrotron, neutron and electron diffraction. These reveal that the crystallographic average cell (2xap, 2xap, c) is orthorhombic, polar and accompanied by versatile (in)commensurate modulations. The supercell model was fully refined for (Bi2-xO2)(FeF4)...
Multiferroic materials with simultaneous magnetic and ferroelectric ordering that persist above room...
Aurivillius oxides have been a research focus due to their ferroelectric properties, but by replacin...
Developing a greater understanding of multiferroic materials, particularly those in which a strong c...
International audienceThe Aurivillius layered compounds with predominant fraction of paramagnetic tr...
peer reviewedAurivillius oxides have been a research focus due to their ferroelectric properties, bu...
peer reviewedWe explore the effect of anion ordering on the ferroelectric properties of the oxyfluor...
PhDMultiferroics (MF) have attracted much research attention due to the coexistence of ferroelectri...
Novel multiferroic materials have attracted increasing attention in recent years. Aurivillius bismut...
We present a first-principles and experimental study of the structural, ferroelectric, and magnetic ...
[EN] Aurivillius oxides with general formula (BiO)(ABO) are being extensively investigated for room-...
Multiferroics that simultaneously exhibit ferroelectricity and ferromagnetism have recently attracte...
posterThe investigation of Bi2O3-MO-P2O5 systems has been performed by analogy to the Bi2O3-MO-V2O5 ...
Multiferroic materials, which are materials that exhibit two or more ‘ferro’ orders in a single phas...
We report a ferroelectric order at ∼98 K for NiFe2O4, which carries an inverse spinel structure with...
Multiferroic means the co-existence of two or more ferroic order property, such as ferroelectricit...
Multiferroic materials with simultaneous magnetic and ferroelectric ordering that persist above room...
Aurivillius oxides have been a research focus due to their ferroelectric properties, but by replacin...
Developing a greater understanding of multiferroic materials, particularly those in which a strong c...
International audienceThe Aurivillius layered compounds with predominant fraction of paramagnetic tr...
peer reviewedAurivillius oxides have been a research focus due to their ferroelectric properties, bu...
peer reviewedWe explore the effect of anion ordering on the ferroelectric properties of the oxyfluor...
PhDMultiferroics (MF) have attracted much research attention due to the coexistence of ferroelectri...
Novel multiferroic materials have attracted increasing attention in recent years. Aurivillius bismut...
We present a first-principles and experimental study of the structural, ferroelectric, and magnetic ...
[EN] Aurivillius oxides with general formula (BiO)(ABO) are being extensively investigated for room-...
Multiferroics that simultaneously exhibit ferroelectricity and ferromagnetism have recently attracte...
posterThe investigation of Bi2O3-MO-P2O5 systems has been performed by analogy to the Bi2O3-MO-V2O5 ...
Multiferroic materials, which are materials that exhibit two or more ‘ferro’ orders in a single phas...
We report a ferroelectric order at ∼98 K for NiFe2O4, which carries an inverse spinel structure with...
Multiferroic means the co-existence of two or more ferroic order property, such as ferroelectricit...
Multiferroic materials with simultaneous magnetic and ferroelectric ordering that persist above room...
Aurivillius oxides have been a research focus due to their ferroelectric properties, but by replacin...
Developing a greater understanding of multiferroic materials, particularly those in which a strong c...