Magnetic cooling could be a radically different energy solution substituting conventional vapour compression refrigeration in the future. For the largest cooling effects of most potential refrigerants we need to fully exploit the different degrees of freedom such as magnetism and crystal structure. We report now for Heusler-type Ni–Mn–In–(Co) magnetic shape-memory alloys, the adiabatic temperature change ΔTad = −3.6 to −6.2 K under a moderate field of 2 T. Here it is the structural transition that plays the dominant role towards the net cooling effect. A phenomenological model is established that reveals the parameters essential for such a large ΔTad. We also demonstrate that obstacles to the application of Heusler alloys, namely the usuall...
AbstractIn this work we experimentally study the magnetic properties and magnetocaloric effect (MCE)...
Ni-Mn-based Heusler alloys, in particular all-d-metal Ni(-Co)-Mn-Ti, are highly promising materials ...
In contrast to rare-earth-based materials, cheaper and more environmentally friendly candidates for ...
Ni-Mn-X (X = In, Sn, and Sb) based Heusler alloys show a strong potential for magnetic refrigeration...
Large magnetocaloric effects can be obtained in Ni-Mn-based Heusler alloys due to the magnetostructu...
We present a comprehensive study on three selected Heusler alloy systems. Ni-Mn-X(-Co) systems with ...
We present a comprehensive study on three selected Heusler alloy systems. Ni-Mn-X(-Co) systems with ...
An inverse magnetocaloric effect is studied in Ni2Mn1+xX1-x-type Heusler alloys. Principally known f...
The all-d-metal Ni-(Co)-Mn-Ti-based Heusler alloys are found to show a giant magnetocaloric effect n...
Devi D, Mejia CS, Caron L, Singh S, Nicklas M, Felser C. Effect of chemical and hydrostatic pressure...
Ni–Co–Mn–Sn based Heusler alloys are promising magnetocaloric materials. The effect of both Co and M...
We have studied the magnetocaloric effect (MCE) in the shape-memory Heusler alloy Ni50Mn35In15 by di...
The present study deals with Ni–Mn–Sn compounds that present large magnetocaloric effect through a f...
Ni-Mn-based Heusler alloys, in particular all-d-metal Ni(-Co)-Mn-Ti, are highly promising materials ...
Two Ni–Mn–Sn alloys substituted with 0.5 and 1 at.% Cr have been studied. The first alloy shows an a...
AbstractIn this work we experimentally study the magnetic properties and magnetocaloric effect (MCE)...
Ni-Mn-based Heusler alloys, in particular all-d-metal Ni(-Co)-Mn-Ti, are highly promising materials ...
In contrast to rare-earth-based materials, cheaper and more environmentally friendly candidates for ...
Ni-Mn-X (X = In, Sn, and Sb) based Heusler alloys show a strong potential for magnetic refrigeration...
Large magnetocaloric effects can be obtained in Ni-Mn-based Heusler alloys due to the magnetostructu...
We present a comprehensive study on three selected Heusler alloy systems. Ni-Mn-X(-Co) systems with ...
We present a comprehensive study on three selected Heusler alloy systems. Ni-Mn-X(-Co) systems with ...
An inverse magnetocaloric effect is studied in Ni2Mn1+xX1-x-type Heusler alloys. Principally known f...
The all-d-metal Ni-(Co)-Mn-Ti-based Heusler alloys are found to show a giant magnetocaloric effect n...
Devi D, Mejia CS, Caron L, Singh S, Nicklas M, Felser C. Effect of chemical and hydrostatic pressure...
Ni–Co–Mn–Sn based Heusler alloys are promising magnetocaloric materials. The effect of both Co and M...
We have studied the magnetocaloric effect (MCE) in the shape-memory Heusler alloy Ni50Mn35In15 by di...
The present study deals with Ni–Mn–Sn compounds that present large magnetocaloric effect through a f...
Ni-Mn-based Heusler alloys, in particular all-d-metal Ni(-Co)-Mn-Ti, are highly promising materials ...
Two Ni–Mn–Sn alloys substituted with 0.5 and 1 at.% Cr have been studied. The first alloy shows an a...
AbstractIn this work we experimentally study the magnetic properties and magnetocaloric effect (MCE)...
Ni-Mn-based Heusler alloys, in particular all-d-metal Ni(-Co)-Mn-Ti, are highly promising materials ...
In contrast to rare-earth-based materials, cheaper and more environmentally friendly candidates for ...