Enhanced magnetoresistance in double perovskite Sr2FeMoO6 through SrMoO4 tunneling barriers
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference24 articles.
1. Continuous excitation of planetary free oscillations by atmospheric disturbances
2. Large room-temperature intergrain magnetoresistance in double perovskite SrFe1−x(Mo or Re)xO3
3. Magnetic and electronic properties of a single crystal of ordered double perovskiteSr2FeMoO6
4. Strong ferromagnetism and weak antiferromagnetism in double perovskites:Sr2FeMO6(M=Mo,W, and Re)
5. Reassessment of the role of antiphase boundaries in the low-field magnetoresistance ofSr2FeMoO6
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1. Optimizing the curie temperature of La0.67Sr0.33MnO3–based composite materials around room temperature through the addition of Mo, Mn, and Ni metallic elements;Journal of Materials Science: Materials in Electronics;2024-06
2. Nanogranular Strontium Ferromolybdate/Strontium Molybdate Ceramics—A Magnetic Material Possessing a Natural Core-Shell Structure;Electronic Materials;2024-01-31
3. RETRACTED ARTICLE: Electric transport effects in Sr2FeMoO6 with SrMoO4 tunneling barriers;Applied Nanoscience;2023-03-21
4. Intergranular magnetoresistance of strontium ferromolybdate ceramics caused by spin-polarized tunneling;Open Ceramics;2021-09
5. Tailoring the Magnetic Properties and Magnetocaloric Effect in Double Perovskites Sr2FeMo1–xNbxO6;Science of Advanced Materials;2020-03-01
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