High-frequency ESR studies of colossal magnetoresistance system Cu(Cr1−xZrx)2S4
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference7 articles.
1. Colossal magnetoresistance in Cr-based chalcogenide spinels
2. Large negative magnetoresistance in thiospinel CuCrZrS4
3. Ferromagnetism in spinels: CuCr2S4 and CuCr2Se4
4. M. Ito, H. Yamamoto, S. Nagata, and T. Suzuki, cond-mat 0507314.
5. A new ferromagnetic thiospinel CuCrZrS4with re-entrant spin-glass behaviour
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1. Structural and magnetic properties evolution of Cu2Cr2Zr2-2Se4 for 0.500 ≤ x ≤ 0.650;Physica B: Condensed Matter;2022-11
2. Effects of Tin and Sulfur Chemical Substitution on the Structural and Electrical Properties of CuCr2Se4 Selenospinel;Applied Sciences;2022-02-01
3. Structural and Magnetic Properties Evolution of Cu <sub>2x</sub>Cr <sub>2x</sub>Zr <sub>2-2x</sub>Se <sub>4</sub> for 0.50 ≤ <i>x</i> ≤ 0.65;SSRN Electronic Journal;2021
4. (Cu)tet(Cr2–xSnx)octS4–ySey Spinels: Crystal Structure, Density Functional Theory Calculations, and Magnetic Behavior;Inorganic Chemistry;2019-10-03
5. Crystal structure, Raman scattering and magnetic properties of CuCr2−Zr Se4 and CuCr2−Sn Se4 selenospinels;Journal of Magnetism and Magnetic Materials;2018-06
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