Multielemental single–atom-thick A layers in nanolaminated V2(Sn, A) C (A = Fe, Co, Ni, Mn) for tailoring magnetic properties
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Summary
15 inherently nanolaminated V2(AxSn1-x)C (A = Fe, Co, Ni, Mn, and combinations thereof, with x ∼ 1/3) MAX phases synthesized by an alloy-guided reaction provide a structural design route to discover nanolAMinated materials and expand their chemical and physical properties.
- Type
- article
- Published
- 2019-08-10
- Cited by
- 110
- References
- 46
- Access
- Open access
- OpenAlex
- https://openalex.org/W2997938411
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:199543503
Keywords
Materials science, Ferromagnetism, Alloy, Atom (system on chip), Nanotechnology
References
- Hume-Rothery rules for structurally complex alloy phases
- High-Entropy Alloys
- Giant magnetoresistance of (001)Fe/(001)Cr magnetic superlattices.
- High-Entropy Alloys: A Critical Review
- Projector augmented-wave method.
- Thermodynamic properties of the Fe-Mn-V-C system
- Generalized Gradient Approximation Made Simple.
- First-principles calculations of the ferroelastic transition between rutile-type and CaCl2-type SiO2 at high pressures
- Thermodynamic evaluation of Fe-Sn phase diagram
- Cr2AlC powders prepared by molten salt method
- The MN+1AXN phases: A new class of solids
- Magnetic self-organized atomic laminate from first principles and thin film synthesis.
- Thermodynamic modeling of the Fe–Ti–V system
- Phase formation and reaction kinetics in the vanadium– tin system
- Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set
- Exchange induced unidirectional anisotropy at FeMn‐Ni80Fe20 interfaces
- A CRITICAL REVIEW
- VESTA 3 for three-dimensional visualization of crystal, volumetric and morphology data
- The Mn+1AXn phases: Materials science and thin-film processing
- Synthesis and characterization of magnetic (Cr0.5Mn0.5)2GaC thin films
Cited by
- MXenes as High-Rate Electrodes for Energy Storage
- Theoretical prediction, synthesis, and crystal structure determination of new MAX phase compound V2SnC
- Low-temperature synthesis of Ti3Al(Sn)C2 solid solution using replacement reaction
- High-entropy alloys: emerging materials for advanced functional applications
- Tailoring Electronic and Optical Properties of MXenes through Forming Solid Solutions.
- Molten Salt Synthesis of Nanolaminated Sc2SnC MAX Phase
- Low-loss high entropy relaxor-like ferroelectrics with A-site disorder
- Medium-entropy (Ti, Zr, Hf)2SC MAX phase
- Effects of temperature and target power on the sputter-deposition of (Ti,Zr)n+1AlCn MAX-phase thin films
- Greatly enhanced solar absorption via high entropy ceramic AlCrTaTiZrN based solar selective absorber coatings
- Radiation effects in Mn+1AXn phases
- Mechanical properties and wear behavior of Tin+1(Al, A)Cn (A = Ga, In, Sn, n = 1, 2) via quasi-high-entropy of single atomic thick A layer
- Study on the Solid Solution Structures of High-Entropy Ceramics by Transmission Electron Microscopy
- Physiological and biochemical effects of Ti3AlC2 nanosheets on rice (Oryza sativa L.).
- On the formation mechanisms and properties of MAX phases: A review
- Synthesis and corrosion resistance of solid solution Ti3(Al1−xSix)C2
- Synthesis and enhanced mechanical properties of compositionally complex MAX phases
- Low-temperature synthesis of pure-phase Ti3(Al, Fe)C2 solid solution with magnetic monoatomic layers by replacement reaction
- Tailoring MAX Phase Magnetic PropertyBased on M-siteand A- site Double Solid Solution
- Theoretical exploration of quaternary hexagonal MAB phases and two-dimensional derivatives.
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