Phase relationships in the quaternary systems MSCr2S3In2S3 (M=Mn, Fe, Co, Ni), miscibility gaps in spinel solid solutions
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference17 articles.
1. Magnetic and Crystallographic Properties of the System MnCr2S4–MnInCrS4
2. Synthesis and magnetic properties of InM2+CrS4(M2+ = Mn,Fe,Co, Ni)
3. FeCr2−xInxS4: Structural and magnetic properties
4. Mo¨ssbauer studies of thiospinels. III. The system FeCr2S4 -FeIn2S4
5. Temperature Dependence of Spontaneous Magnetization of the FeCr2−xInxS4 (0 ≦ x ≦ 1) System
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1. Does Low‐Level Substitution Aid in Improving Thermoelectric Properties? A Case Study of M 0.1 Ni 0.9 Cr 2 S 4 (M = Mn, In);Advanced Engineering Materials;2021-10-28
2. Predictions of Chalcospinels with Composition ABCX4 (X = S or Se);Inorganic Materials: Applied Research;2021-03
3. Infrared spectroscopic studies on spinel-type chromium indium sulfide solid solutions;Journal of Molecular Structure;2001-09
4. Phase equilibria and layered phases in the systems A2X3-M2X3-M'X (A = Ga, In; M = trivalent metal; M' = divalent metal; X = S, Se);Zeitschrift für Kristallographie - Crystalline Materials;2000-04-01
5. Raman spectroscopic studies on decomposition of spinel-type cobalt chromium indium sulfide solid solutions;Materials Research Bulletin;2000-03
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