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-order magnetic phase transition can be tailored in this all-d-metal NiCoMnTi based Heusler system by optimizing the Mn/Ti ratio, resulting in a reversible ferromagnetic-to-paramagnetic magnetic transition. A candidate material Ni33Co17Mn30Ti20 with a magnetic entropy change ∆Sm of 2.3 Jkg−1K−1 for a magnetic field change of 0–5 T, has been identified. The TC and saturation magnetization MS can be controlled by adjusting the Ni/Co concentration and doping non-magnetic Cu atoms. The compositional maps of TC and MS have been established. Density functional theory (DFT) calcul...
The magnetic properties of NiMnGe1−xAlx, Ni50Mn35(In1−xBx)15, Ni50Mn35In14.5B0.5 (Bulk, As-Solidifi...
We present a new approach for a large-scale production of the rare-earth free NiCoMnIn Heusler alloy...
The phase transitions and associated magnetocaloric properties of the Ni2Mn0.55CoxCr0.45-xGa (0 ≤ x ...
The all-d-metal Ni-(Co)-Mn-Ti-based Heusler alloys are found to show a giant magnetocaloric effect n...
New magnetocaloric Heusler alloys with larger magnetocaloric effects need to function in relatively ...
Ni–Co–Mn–Sn based Heusler alloys are promising magnetocaloric materials. The effect of both Co and M...
In contrast to rare-earth-based materials, cheaper and more environmentally friendly candidates for ...
The studies of magnetocaloric properties, phase transitions, and phenomena related to magnetic heter...
We present a comprehensive study on three selected Heusler alloy systems. Ni-Mn-X(-Co) systems with ...
Ni-Mn-based Heusler alloys have a high technical potential related to a large change of magnetizatio...
AbstractIn this work we experimentally study the magnetic properties and magnetocaloric effect (MCE)...
We present the results of the studies of magnetic and magnetocaloric (MCE) properties of quaternary ...
The Co-substitution for Ni in the Mn-rich NiMnGa Heusler alloys changes substantially their structur...
Abstract The influence of Cu substitution for Mn on mag-netic properties and magnetic entropy change...
Ni-Mn-X (X = In, Sn, and Sb) based Heusler alloys show a strong potential for magnetic refrigeration...
The magnetic properties of NiMnGe1−xAlx, Ni50Mn35(In1−xBx)15, Ni50Mn35In14.5B0.5 (Bulk, As-Solidifi...
We present a new approach for a large-scale production of the rare-earth free NiCoMnIn Heusler alloy...
The phase transitions and associated magnetocaloric properties of the Ni2Mn0.55CoxCr0.45-xGa (0 ≤ x ...
The all-d-metal Ni-(Co)-Mn-Ti-based Heusler alloys are found to show a giant magnetocaloric effect n...
New magnetocaloric Heusler alloys with larger magnetocaloric effects need to function in relatively ...
Ni–Co–Mn–Sn based Heusler alloys are promising magnetocaloric materials. The effect of both Co and M...
In contrast to rare-earth-based materials, cheaper and more environmentally friendly candidates for ...
The studies of magnetocaloric properties, phase transitions, and phenomena related to magnetic heter...
We present a comprehensive study on three selected Heusler alloy systems. Ni-Mn-X(-Co) systems with ...
Ni-Mn-based Heusler alloys have a high technical potential related to a large change of magnetizatio...
AbstractIn this work we experimentally study the magnetic properties and magnetocaloric effect (MCE)...
We present the results of the studies of magnetic and magnetocaloric (MCE) properties of quaternary ...
The Co-substitution for Ni in the Mn-rich NiMnGa Heusler alloys changes substantially their structur...
Abstract The influence of Cu substitution for Mn on mag-netic properties and magnetic entropy change...
Ni-Mn-X (X = In, Sn, and Sb) based Heusler alloys show a strong potential for magnetic refrigeration...
The magnetic properties of NiMnGe1−xAlx, Ni50Mn35(In1−xBx)15, Ni50Mn35In14.5B0.5 (Bulk, As-Solidifi...
We present a new approach for a large-scale production of the rare-earth free NiCoMnIn Heusler alloy...
The phase transitions and associated magnetocaloric properties of the Ni2Mn0.55CoxCr0.45-xGa (0 ≤ x ...