Martensitic phase transformations and magnetocaloric effect in Al co-sputtered Ni–Mn–Sb alloy thin films
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- Type
- article
- Published
- 2015-08-01
- Cited by
- 23
- References
- 28
- OpenAlex
- https://openalex.org/W305898843
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:92287041
Keywords
Magnetic refrigeration, Materials science, Magnetization, Alloy, Thin film
References
- The Magnetocaloric Effect and its Applications
- Magnetostructural transition and magnetocaloric effect in Ni55Mn20Ga25 single crystals
- Inverse magnetocaloric effect in ferromagnetic Ni50Mn37+xSb13−x Heusler alloys
- Giant magnetocaloric effect of MnAs1−xSbx
- Magnetocaloric Properties of Ni2Mn1−xCuxGa
- Magnetocaloric effect in Heusler alloys Ni50Mn34In16 and Ni50Mn34Sn16
- Magnetic properties of ferromagnetic shape memory alloys Ni _2-x Cu _x MnGa
- Enhanced exchange bias in magnetron-sputtered Ni–Mn–Sb–Al ferromagnetic shape memory alloy thin films
- Role of Ni-Mn hybridization in the magnetism of the martensitic state of Ni-Mn-In shape memory alloys
- Giant magnetocaloric effect in Tb3Rh
- Abnormal e/a-dependence of TM and large inverse magnetocaloric effect in Ni49-xCuxMn39Sb12 alloys
- Thickness dependent phase transformation of magnetron-sputtered Ni–Mn–Sn ferromagnetic shape memory alloy thin films
- Magnetocaloric effect Part 2: magnetocaloric effect in heavy rare earth metals and their alloys and application to magnetic refrigeration
- Magnetic properties and martensitic transformation in quaternary Heusler alloy of NiMnFeGa
- Structural, magnetic and magnetocaloric properties of Heusler alloys Ni50Mn38Sb12 with boron addition
- Magnetoresistance and field-induced structural transitions in Ni50Mn50−xSnx Heusler alloys
- Systematic study of structural, transport, and magnetic properties of Ni52+xMn26−xAl22 (1 ≤ x ≤ 5) melt-spun ribbons
- Review of the magnetocaloric effect in manganite materials
- Some common misconceptions concerning magnetic refrigerant materials
- Lanthanide contraction and magnetism in the heavy rare earth elements
Cited by
- Crystal structure and crystallographic characteristics of martensite in Ni50Mn38Sb12 alloys
- Enhanced magnetocaloric effect in a Co-doped Heusler Mn 50 Ni 37 Co 3 In 10 unidirectional crystal
- Sintering kinetics of Ni2FeSb powder alloys produced by mechanical milling
- Filmes de gadolínio depositados por magnetron sputtering sobre Si em diferentes potenciais de polarização
- Effect of Cr addition on the structural, magnetic and mechanical properties of magnetron sputtered Ni–Mn–In ferromagnetic shape memory alloy thin films
- Magnetocaloric effect of Ni-Fe-Mn-Sn microwires prepared by melt-extraction technique
- Bipolar resistive switching behavior in Cu/AlN/Pt structure for ReRAM application
- Crystallographic study on microstructure and martensitic transformation of NiMnSb meta-magnetic multi-functional alloys
- Crystallographic features of the martensitic transformation and their impact on variant organization in the intermetallic compound Ni50Mn38Sb12 studied by SEM/EBSD
- Magnetocaloric effect: From materials research to refrigeration devices
- Phase formation kinetics, hardness and magnetocaloric effect of sub-rapidly solidified LaFe 11.6 Si 1.4 plates during isothermal annealing
- Phase Transition Behavior and Magnetocaloric Effect in a Heusler Ni50Mn37Sn13 Unidirectional Crystal
- Enhanced magnetic refrigeration capacity in Ni-Mn-Ga micro-particles
- Studying of doping boron and carbon in LaFe11.6Si1.4 magnetocaloric alloy by experimental and density-functional methods
- Magnetocaloric materials: From micro- to nanoscale
- Magnetocaloric effect in W-doped Ni–Mn–Sn alloy probed by direct and indirect measurements
- Shape memory behavior of Ni45Mn40Co5Sb10−xBx magnetic shape memory alloys
- Magnetocaloric effect in Ni–Fe–Mn–Sn microwires with nano-sized γ precipitates
- Thermodynamic characteristics and magnetocaloric effect of a diluted graphdiyne monolayer with defects: A Monte Carlo study
- Change on Tetragonality of L10 Phase With Homogenization Time on Ni50Mn29Sb21 Shape Memory Heusler Alloy
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