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Title
Magnetic ground state of theMn+1AXn-phase nitride Cr2GaN
Authors
Keywords
-
Journal
PHYSICAL REVIEW B
Volume 88, Issue 13, Pages -
Publisher
American Physical Society (APS)
Online
2013-10-02
DOI
10.1103/physrevb.88.134401
References
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Related references
Note: Only part of the references are listed.- Correlation between magnetic state and bulk modulus of Cr2AlC
- (2013) M. Dahlqvist et al. JOURNAL OF APPLIED PHYSICS
- Magnetic and electrical/thermal transport properties of Mn-doped Mn+1AXn phase compounds Cr2−xMnxGaC (0 ≤ x ≤ 1)
- (2013) S. Lin et al. JOURNAL OF APPLIED PHYSICS
- Synthesis andab initiocalculations of nanolaminated (Cr,Mn)2AlC compounds
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- Magnetic Self-Organized Atomic Laminate from First Principles and Thin Film Synthesis
- (2013) A. S. Ingason et al. PHYSICAL REVIEW LETTERS
- Electronic correlation effects in the Cr2GeC Mn+1AXxphase
- (2012) Maurizio Mattesini et al. JOURNAL OF PHYSICS-CONDENSED MATTER
- First-principles study of the structural and elastic properties of Cr2AlX (X=N, C) compounds
- (2012) Shouxin Cui et al. JOURNAL OF SOLID STATE CHEMISTRY
- Progress in research and development on MAX phases: a family of layered ternary compounds
- (2011) Z M Sun INTERNATIONAL MATERIALS REVIEWS
- Electron correlation effects in the MAX phase Cr2AlC from first-principles
- (2011) Y. L. Du et al. JOURNAL OF APPLIED PHYSICS
- Correlation effects in the electronic and structural properties of Cr2AlC
- (2011) M. Ramzan et al. Physica Status Solidi-Rapid Research Letters
- Magnetic nanoscale laminates with tunable exchange coupling from first principles
- (2011) M. Dahlqvist et al. PHYSICAL REVIEW B
- First-principles study of structural, thermodynamic, elastic, and magnetic properties of Cr2GeC under pressure and temperature
- (2009) Wei Zhou et al. JOURNAL OF APPLIED PHYSICS
- Ti2GaC, Ti4GaC3 and Cr2GaC—Synthesis, crystal growth and structure analysis of Ga-containing MAX-phases Mn+1GaCn with M=Ti, Cr and n=1, 3
- (2009) Johannes Etzkorn et al. JOURNAL OF SOLID STATE CHEMISTRY
- Structural, electronic and elastic properties of MAX phases M2GaN (M=Ti, V and Cr)
- (2009) A. Bouhemadou SOLID STATE SCIENCES
- The Mn+1AXn phases: Materials science and thin-film processing
- (2009) Per Eklund et al. THIN SOLID FILMS
- Magnetic Fen+1ACn (n = 1, 2, 3, and A = Al, Si, Ge) phases: from ab initio theory
- (2008) W Luo et al. JOURNAL OF PHYSICS-CONDENSED MATTER
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