Ferrimagnetic and half-metallic CaCu3Fe4O12: Prediction from first principles investigation
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2753734
Reference35 articles.
1. Large Low-Field Magnetoresistance in Perovskite-typeCaCu3Mn4O12without Double Exchange
2. Electronic structure study of the magnetoresistance materialCaCu3Mn4O12by LSDA andLSDA+U
3. Calculated electronic properties of the mixed perovskite oxides: CaCu3T4O12 (T=Ti, Cr, Mn, Ru) within the DFT
4. Magnetoelectronic properties of a ferrimagnetic semiconductor: The hybrid cupromanganiteCaCu3Mn4O12
5. A first-principles study of the different magnetoresistance mechanisms in CaCu3Mn4O12 and LaCu3Mn4O12
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1. Structural and Magneto-Elastic Properties of the Quadruple Perovskites CaCu3B2Os2O12 (B = Mn-Ni): The Heisenberg Model and DFT Study;Journal of Electronic Materials;2023-07-02
2. Combined first principles and Heisenberg model studies of ferrimagnetic Tri-transition quaternary perovskites CaCu3B2Re2O12 (B = Mn, Fe, Co, and Ni);Journal of Physics and Chemistry of Solids;2023-03
3. Effects of A-Site cation on the Physical Properties of Quaternary Perovskites AMn3V4O12 (A= Ca, Ce and Sm);Materials Chemistry and Physics;2020-11
4. Itinerant and localized paramagnetism in Co doped CaCu3Ru4O12;Materials Research Express;2019-12-05
5. Phase diagram description of the CaCu3Fe4O12 double perovskite;Journal of Applied Physics;2018-07-28
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