Viable materials with a giant magnetocaloric effect
This review of the current state of magnetocalorics is focused on materials exhibiting a giant
magnetocaloric response near room temperature. To be economically viable for industrial …
magnetocaloric response near room temperature. To be economically viable for industrial …
Hierarchical design in nanoporous metals
Hierarchically porous metals possess intriguing high accessibility of matter molecules and
unique continuous metallic frameworks, as well as a high level of exposed active atoms …
unique continuous metallic frameworks, as well as a high level of exposed active atoms …
High-Throughput Screening of All-d-Metal Heusler Alloys for Magnetocaloric Applications
NM Fortunato, X Li, S Schönecker, R **e… - Chemistry of …, 2024 - ACS Publications
Due to their versatile composition and customizable properties, A2BC Heusler alloys have
found applications in magnetic refrigeration, magnetic shape memory effects, permanent …
found applications in magnetic refrigeration, magnetic shape memory effects, permanent …
Tailoring magnetocaloric effect in all-d-metal Ni-Co-Mn-Ti Heusler alloys: a combined experimental and theoretical study
A Taubel, B Beckmann, L Pfeuffer, N Fortunato… - Acta Materialia, 2020 - Elsevier
Abstract Novel Ni-Co-Mn-Ti all-d-metal Heusler alloys are exciting due to large multicaloric
effects combined with enhanced mechanical properties. An optimized heat treatment for a …
effects combined with enhanced mechanical properties. An optimized heat treatment for a …
All-d-Metal Full Heusler Alloys: A Novel Class of Functional Materials
Full Heusler alloys display a wide range of physical phenomena with potential applications
in different areas. However, researchers still struggle to overcome many limiting factors to …
in different areas. However, researchers still struggle to overcome many limiting factors to …
[HTML][HTML] Giant elastocaloric effect and exceptional mechanical properties in an all-d-metal Ni–Mn–Ti alloy: Experimental and ab-initio studies
Exploring novel materials with superior elastocaloric effect (eCE) is a central issue for the
development of eCE refrigeration technique. In this work, we report a giant adiabatic …
development of eCE refrigeration technique. In this work, we report a giant adiabatic …
Theoretical investigations on elastic properties, phase stability, and magnetism in all- Heusler compounds
G Li, E Liu, W Wang, G Wu - Physical Review B, 2023 - APS
The elastic properties, phase stability, and magnetism and correlations among them in all-d-
metal Heusler compounds, ie, Ni 2 Mn T (T= Sc, Ti, V, Cr, Y, Zr, Nb, Mo, Hf, Ta, and W) were …
metal Heusler compounds, ie, Ni 2 Mn T (T= Sc, Ti, V, Cr, Y, Zr, Nb, Mo, Hf, Ta, and W) were …
[HTML][HTML] The second-order magnetic phase transition and magnetocaloric effect in all-d-metal NiCoMnTi-based Heusler alloys
F Zhang, K Westra, Q Shen, I Batashev… - Journal of Alloys and …, 2022 - Elsevier
The novel all-d-metal Ni (Co) MnTi based magnetic Heusler alloys provide an adjustable
giant magnetocaloric effect and good mechanical properties. We report that the second …
giant magnetocaloric effect and good mechanical properties. We report that the second …
dd hybridization controlled large-volume-change martensitic phase transition in Ni-Mn-Ti-based all-d-metal Heusler compounds
G Li, E Liu, G Wu - Journal of Alloys and Compounds, 2022 - Elsevier
Martensitic phase transition in all-d-metal Heusler compounds was investigated by using
first principles calculations. The large change in volume during martensitic phase transition …
first principles calculations. The large change in volume during martensitic phase transition …
Large magnetocaloric effect and magnetoresistance in Fe-Co doped Ni50-x (FeCo) xMn37Ti13 all-d-metal Heusler alloys
The effect of substituting FeCo in Ni site maintaining their same ratio on structural,
magnetocaloric, and magneto-transport properties of all-d-metal Ni 50-x (FeCo) x Mn 37 Ti …
magnetocaloric, and magneto-transport properties of all-d-metal Ni 50-x (FeCo) x Mn 37 Ti …