The magnetocaloric properties of Fe and Ge doped Ni2Mn0.75Cu0.25Ga Heusler alloys have been investigated. Using Ni2Mn0.75Cu0.25Ga as the parent material, the Fe doped system (Ni2Mn1−x(Cu–Fe)xGa) and a Ge doped system (Ni2Mn1−xCuxGa1−xGex) were studied. The manipulation of the Mn–Cu subsystem with Fe doping results in a decrease of the first order magnetostructural transition temperature, whereas the substitution of Ge for the Mn–Cu–Ga subsystems results in an increase of the magnetostructural transition temperature. In both cases the giant magnetocaloric effect is successfully preserved
Abstract Currently, there is significant interest in magnetocaloric materials for solid state refrig...
The magnetocaloric properties of polycrystalline Ni50Mn50−xInx (15 ⩽ x ⩽ 16) associated with the se...
Magnetic properties and giant magnetocaloric effect (GMCE) of Mn-based Heusler compounds such as Co-...
The magnetocaloric properties of Fe and Ge doped Ni2 Mn0.75 Cu0.25 Ga Heusler alloys have been inves...
We present the magnetocaloric properties of the substituted Heusler alloy Ni2Mn1−xCuxGa, which shows...
We present the magnetocaloric properties of the substituted Heusler alloy Ni2 Mn1-x Cux Ga, which sh...
We have investigated the magnetocaloric properties on the Ni2Mn1−xAxGa Heusler alloys with partial s...
We have investigated the magnetocaloric properties on the Ni2 Mn1-x Ax Ga Heusler alloys with partia...
Detailed studies of room temperature crystal structures, phase transitions, and related magnetic ent...
In view of the looming energy crisis facing our planet, attention increasingly focuses on materials ...
Detailed studies of room temperature crystal structures, phase transitions, and related magnetic ent...
The effect of doping on the crystal structure, magnetic, magnetocaloric and transport properties of ...
Measurements of the adiabatic temperature change (ΔT) and the specific heat transfer (ΔQ) of Ni 2.18...
The Mn-based Heusler alloys encompass a rich collection of useful materials from highly spin-polariz...
An inverse magnetocaloric effect is studied in Ni2Mn1+xX1-x-type Heusler alloys. Principally known f...
Abstract Currently, there is significant interest in magnetocaloric materials for solid state refrig...
The magnetocaloric properties of polycrystalline Ni50Mn50−xInx (15 ⩽ x ⩽ 16) associated with the se...
Magnetic properties and giant magnetocaloric effect (GMCE) of Mn-based Heusler compounds such as Co-...
The magnetocaloric properties of Fe and Ge doped Ni2 Mn0.75 Cu0.25 Ga Heusler alloys have been inves...
We present the magnetocaloric properties of the substituted Heusler alloy Ni2Mn1−xCuxGa, which shows...
We present the magnetocaloric properties of the substituted Heusler alloy Ni2 Mn1-x Cux Ga, which sh...
We have investigated the magnetocaloric properties on the Ni2Mn1−xAxGa Heusler alloys with partial s...
We have investigated the magnetocaloric properties on the Ni2 Mn1-x Ax Ga Heusler alloys with partia...
Detailed studies of room temperature crystal structures, phase transitions, and related magnetic ent...
In view of the looming energy crisis facing our planet, attention increasingly focuses on materials ...
Detailed studies of room temperature crystal structures, phase transitions, and related magnetic ent...
The effect of doping on the crystal structure, magnetic, magnetocaloric and transport properties of ...
Measurements of the adiabatic temperature change (ΔT) and the specific heat transfer (ΔQ) of Ni 2.18...
The Mn-based Heusler alloys encompass a rich collection of useful materials from highly spin-polariz...
An inverse magnetocaloric effect is studied in Ni2Mn1+xX1-x-type Heusler alloys. Principally known f...
Abstract Currently, there is significant interest in magnetocaloric materials for solid state refrig...
The magnetocaloric properties of polycrystalline Ni50Mn50−xInx (15 ⩽ x ⩽ 16) associated with the se...
Magnetic properties and giant magnetocaloric effect (GMCE) of Mn-based Heusler compounds such as Co-...