Magnetic moment collapse induced axial alternative compressibility of Cr2TiAlC2 at 420 GPa from first principle
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/srep34092.pdf
Reference46 articles.
1. Liu, Z. M. et al. Crystal structure and formation mechanism of (Cr2/3Ti1/3)3AlC2 MAX phase. Acta Materialia 73, 186–193 (2014).
2. Zheng, L. Y. et al. (Ti0.5Nb0.5)5AlC4: A New-Layered Compound Belonging to MAX Phases. J. Am. Cer. Soc. 93, 3068–3071 (2010).
3. Liu, Z. M. et al. (Cr2/3Ti1/3)3AlC2 and (Cr5/8Ti3/8)4AlC3: New MAX-phase Compounds in Ti-Cr-Al-C System. J. Am. Cer. Soc. 97, 67–69 (2014).
4. Ma, S. H., Jiao, Z. Y. & Huang, X. F. First-principles study of ceramic material (Ti1−xNbx)2AlC compounds and its compressive behavior under pressure up to 55 GPa. J. Alloys Comp. 591, 110–116 (2014).
5. Shang, L., Music, D., Baben, M. & Schneider, J. M. Phase stability predictions of (Cr1−x,Mx)2(Al1−y,Ay)(C1−z,Xz) (M=Ti, Hf,Zr; A=Si, X=B). J. Phys. D: Appl. Phys. 47, 065308–065314 (2014).
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