The double solid solution (Zr, Nb)2(Al, Sn)C MAX phase: a steric stability approach
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Title
The double solid solution (Zr, Nb)2(Al, Sn)C MAX phase: a steric stability approach
Authors
Keywords
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Journal
Scientific Reports
Volume 8, Issue 1, Pages -
Publisher
Springer Nature America, Inc
Online
2018-08-20
DOI
10.1038/s41598-018-31271-2
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Related references
Note: Only part of the references are listed.- Nanolaminated ternary carbide (MAX phase) materials for high temperature applications
- (2018) T. Lapauw et al. INTERNATIONAL JOURNAL OF REFRACTORY METALS & HARD MATERIALS
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- (2016) Thomas Lapauw et al. INORGANIC CHEMISTRY
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- (2016) T. Lapauw et al. JOURNAL OF THE EUROPEAN CERAMIC SOCIETY
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- (2016) Denis Horlait et al. Scientific Reports
- New Solid Solution MAX Phases: (Ti0.5, V0.5)3AlC2, (Nb0.5, V0.5)2AlC, (Nb0.5, V0.5)4AlC3and (Nb0.8, Zr0.2)2AlC
- (2014) M. Naguib et al. Materials Research Letters
- Improving the High-Temperature Oxidation Resistance of Nb4AlC3by Silicon Pack Cementation
- (2013) Liya Zheng et al. JOURNAL OF THE AMERICAN CERAMIC SOCIETY
- Magnetic structure determination of TbCo2Ni3using polarized and nonpolarized neutron powder diffraction
- (2013) Oleg Rivin et al. PHYSICAL REVIEW B
- Tailoring of the thermal expansion of Cr2(Alx,Ge1−x)C phases
- (2012) Thierry Cabioch et al. JOURNAL OF THE EUROPEAN CERAMIC SOCIETY
- Microstructure and mechanical properties of a Cr2Al(Si)C solid solution
- (2010) Wenbo Yu et al. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING
- Ti3SiC2 as a candidate material for lead cooled fast reactor
- (2010) M. Utili et al. NUCLEAR ENGINEERING AND DESIGN
- Electro-structural correlations, elastic and optical properties among the nanolaminated ternary carbides Zr2AC
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- Theoretical study of mechanical, electronic, chemical bonding and optical properties of Ti2SnC, Zr2SnC, Hf2SnC and Nb2SnC
- (2009) M.B. Kanoun et al. COMPUTATIONAL MATERIALS SCIENCE
- 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
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