The phase transitions in CsFe(MoO4)2 triangular lattice antiferromagnet, neutron diffraction and high pressure studies
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference18 articles.
1. Spin Current and Magnetoelectric Effect in Noncollinear Magnets
2. Direct Transition from a Disordered to a Multiferroic Phase on a Triangular Lattice
3. Stabilization of the elliptical spiral phase and the spin-flop transition in multiferroicMn1−xCoxWO4
4. Re-entrant ferroelectricity and the multiferroic phase diagram of Mn1−xFexWO4
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1. Hydrothermal synthesis and structure of ferric molybdates from sodium carbonate solutions;Solid State Sciences;2024-02
2. Frustration and 120° Magnetic Ordering in the Layered Triangular Antiferromagnets AFe(PO3F)2 (A = K, (NH4)2Cl, NH4, Rb, and Cs);Chemistry of Materials;2022-08-15
3. Reactivity of FeMoO4 in CsCl Fluxes and Formation of the Salt-Inclusion Type of Compounds;Inorganic Chemistry;2022-06-16
4. Magnetic phases of the S=52 triangular-lattice antiferromagnet RbFe( MoO4)2 as determined by ultrasound velocity measurements;Physical Review B;2021-06-21
5. Thermodynamic Properties, Mössbauer Study, and First-Principles Calculations of TlFe(MoO4)2;The Journal of Physical Chemistry C;2018-07-17
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