Magnetism and electronic transport in R2Mn3Si5 (R=Dy, Ho and Er) compounds
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference15 articles.
1. Ce2Co3Si5 and R2Ni3Si5 (R ≡ Ce, Dy, Y) with the orthorhombic U2Co3Si5-type structure and the structural relationship with the tetragonaL Sc2Fe3Si5-type structure
2. Magnetic structures of Tb2Co3Si5 and Dy2Co3Si5 compounds
3. Ce2Ni3Si5: A mixed-valence cerium compound
4. Antiferromagnetic transitions in the Kondo lattice systemCe2Ni3Ge5
5. Thermoelectric properties of the intermediate valent cerium intermetallic Ce2Ni3Si5 doped with Pd, Co, and Cu
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1. Room Temperature Charge Density Wave in a Tetragonal Polymorph of Gd2Os3Si5 and Study of Its Origin in the RE2T3X5 (RE = Rare Earth, T = Transition Metal, X = Si, Ge) Series;Chemistry of Materials;2024-07-11
2. Structural and physical properties of R2M3X5 compounds;Handbook on the Physics and Chemistry of Rare Earths;2023
3. Comments on the thermoelectric power of intermetallic rare-earth compounds with well localized 4f shells;Journal of Magnetism and Magnetic Materials;2016-05
4. Syntheses and crystal structures of RE3MnSn5−x (RE=Tm, Lu) with 3D Mn–Sn framework;Journal of Solid State Chemistry;2010-09
5. ChemInform Abstract: Magnetism and Electronic Transport in Ln2Mn3Si5 (Ln: Dy, Ho and Er) Compounds.;ChemInform;2010-05-24
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