The effect of substituting Ag for In on the structural, magnetocaloric, and thermomagnetic properties of Ni50Mn35In15−xAgx (x = 0.1, 0.2, 0.5, and 1) Heusler alloys was studied. The magnitude of the magnetization change at the martensitic transition temperature (TM) decreased with increasing Ag concentration. Smaller magnetic entropy changes (ΔSM) were observed for the alloys with larger Ag concentrations and the martensitic transition shifted to higher temperature. A shift of TM by about 25 K to higher temperature was observed for an applied hydrostatic pressure of P = 6.6 kbar with respect to ambient pressure. A large drop in resistivity was observed for large Ag concentration. The magnetoresistance was dramatically suppressed due to an i...
At certain compositions Ni-Mn-$X$ Heusler alloys ($X$: group IIIA-VA elements) undergo martensitic t...
In this paper, we have explored the effects of the partial substitution of Ni for a small amount of ...
In recent years Ni-Mn-Z (Z= Ga, Sn, Sb and In) Heusler alloys have attracted enormous attention owin...
The effect of substituting Ag for In on the structural, magnetocaloric, and thermomagnetic propertie...
The studies of magnetocaloric properties, phase transitions, and phenomena related to magnetic heter...
The effect of partial substitution of In by X = Si, Ge and Al on the structural, electrical and magn...
The magnetic, magnetotransport, and magnetocaloric properties near compound phase transitions in Ni ...
Abstract The influence of Cu substitution for Mn on mag-netic properties and magnetic entropy change...
We present the results of the studies of magnetic and magnetocaloric (MCE) properties of quaternary ...
We present a comprehensive study on three selected Heusler alloy systems. Ni-Mn-X(-Co) systems with ...
The impact of B substitution in Ni50Mn35In15-xBx Heusler alloys with x = (0, 0.5, 0.75, 1, 1.1 1.5, ...
The impact of B substitution in Ni50Mn35In15-xBx Heusler alloys on the structural, magnetic, transpo...
The structural, thermal, magnetic, magnetocaloric, and magnetotransport properties of the Heusler al...
The Mn-based Heusler alloys encompass a rich collection of useful materials from highly spin-polariz...
The effect of Ge substitution on the magnetic, magnetocaloric, and exchange bias properties of Heusl...
At certain compositions Ni-Mn-$X$ Heusler alloys ($X$: group IIIA-VA elements) undergo martensitic t...
In this paper, we have explored the effects of the partial substitution of Ni for a small amount of ...
In recent years Ni-Mn-Z (Z= Ga, Sn, Sb and In) Heusler alloys have attracted enormous attention owin...
The effect of substituting Ag for In on the structural, magnetocaloric, and thermomagnetic propertie...
The studies of magnetocaloric properties, phase transitions, and phenomena related to magnetic heter...
The effect of partial substitution of In by X = Si, Ge and Al on the structural, electrical and magn...
The magnetic, magnetotransport, and magnetocaloric properties near compound phase transitions in Ni ...
Abstract The influence of Cu substitution for Mn on mag-netic properties and magnetic entropy change...
We present the results of the studies of magnetic and magnetocaloric (MCE) properties of quaternary ...
We present a comprehensive study on three selected Heusler alloy systems. Ni-Mn-X(-Co) systems with ...
The impact of B substitution in Ni50Mn35In15-xBx Heusler alloys with x = (0, 0.5, 0.75, 1, 1.1 1.5, ...
The impact of B substitution in Ni50Mn35In15-xBx Heusler alloys on the structural, magnetic, transpo...
The structural, thermal, magnetic, magnetocaloric, and magnetotransport properties of the Heusler al...
The Mn-based Heusler alloys encompass a rich collection of useful materials from highly spin-polariz...
The effect of Ge substitution on the magnetic, magnetocaloric, and exchange bias properties of Heusl...
At certain compositions Ni-Mn-$X$ Heusler alloys ($X$: group IIIA-VA elements) undergo martensitic t...
In this paper, we have explored the effects of the partial substitution of Ni for a small amount of ...
In recent years Ni-Mn-Z (Z= Ga, Sn, Sb and In) Heusler alloys have attracted enormous attention owin...