We investigated the crystal structure and magnetic structure in cobaltite-platinate double perovskite of La2CoPtO6, employing various techniques of X-ray diffraction, neutron diffraction, and the extended X-ray absorption fine structure analysis. It is shown that the crystal symmetry is maintained as P21/n in the temperature range of 0.03 Å) of the Co-Co networks, the system is not subject to spin frustration effect. Details in the magnetic structure are determined; at 12 K, the Co magnetic moment was (0.8, 0, 2.7) Bohr magneton, the magnetic propagation vector was (-0.5, 0, 0.5), and the magnetic symmetry was preferably Δ1(Ag). © 2018 American Chemical Societ
Magnetic properties and spin dynamics have been studied for the structurally ordered double perovski...
The double perovskites A2LnMO6 (A = Sr2+ and Ba2+; Ln = trivalent lanthanide cation; M = pentavalent...
Magnetic properties and spin dynamics have been studied for the structurally ordered double perovski...
We investigated the local electronic structure and magnetic properties of the cobaltite double perov...
We investigated the local electronic structure and magnetic properties of the cobaltite double perov...
The new double perovskite La3Co2TaO9 has been prepared by a solid-state procedure. The crystal and m...
Double perovskites La3Co2NbO9 and La 3Co2TaO9 have been prepared by both solid state and sol-gel syn...
We report the structure and the magnetic behaviors of the Fe-doped La2Co1-xFexMnO6 family of compoun...
The synthesis, structural characterization, and magnetic properties of La 3Co 2SbO 9 double perovski...
The crystal structure and magnetism of Ca2-xLaxFeReO6 (0 <= x <= 0.8) double perovskites have been i...
The ordered double perovskite Pb2NiReO6 has been prepared at 6 GPa and temperatures ranging from 127...
The magnetism of double perovskites is a complex phenomenon, determined from intra- or interatomic m...
The magnetism of double perovskites is a complex phenomenon, determined from intra- or interatomic m...
La-doped Sr2CoWO6 double perovskites have been prepared in air in polycrystalline form by solid-stat...
We investigated the orbital hybridization mechanism in 3d-5d double perovskites (DPs) of La2CoIrO6 a...
Magnetic properties and spin dynamics have been studied for the structurally ordered double perovski...
The double perovskites A2LnMO6 (A = Sr2+ and Ba2+; Ln = trivalent lanthanide cation; M = pentavalent...
Magnetic properties and spin dynamics have been studied for the structurally ordered double perovski...
We investigated the local electronic structure and magnetic properties of the cobaltite double perov...
We investigated the local electronic structure and magnetic properties of the cobaltite double perov...
The new double perovskite La3Co2TaO9 has been prepared by a solid-state procedure. The crystal and m...
Double perovskites La3Co2NbO9 and La 3Co2TaO9 have been prepared by both solid state and sol-gel syn...
We report the structure and the magnetic behaviors of the Fe-doped La2Co1-xFexMnO6 family of compoun...
The synthesis, structural characterization, and magnetic properties of La 3Co 2SbO 9 double perovski...
The crystal structure and magnetism of Ca2-xLaxFeReO6 (0 <= x <= 0.8) double perovskites have been i...
The ordered double perovskite Pb2NiReO6 has been prepared at 6 GPa and temperatures ranging from 127...
The magnetism of double perovskites is a complex phenomenon, determined from intra- or interatomic m...
The magnetism of double perovskites is a complex phenomenon, determined from intra- or interatomic m...
La-doped Sr2CoWO6 double perovskites have been prepared in air in polycrystalline form by solid-stat...
We investigated the orbital hybridization mechanism in 3d-5d double perovskites (DPs) of La2CoIrO6 a...
Magnetic properties and spin dynamics have been studied for the structurally ordered double perovski...
The double perovskites A2LnMO6 (A = Sr2+ and Ba2+; Ln = trivalent lanthanide cation; M = pentavalent...
Magnetic properties and spin dynamics have been studied for the structurally ordered double perovski...