The structural, magnetic, magnetocaloric, and transport properties of Ni50Mn35In15-xBix (x = 0, 0.25, 0.5, 1, 1.5) compounds has been studied through X-ray diffraction (XRD), differential scanning calorimetry, and magnetization measurements. A mixture of high temperature austenite phase (AP) and low temperature martensitic phase (MP) was observed from the XRD at room temperature. The saturation magnetization MS at 10 K was found to decrease with increasing Bi content. A shift in the martensitic transition temperature (TM) relative to the parent compound was observed with a maximum shift of ∼ 36 K for x = 1.5. Abnormal shifts in TC and TM to higher temperatures were observed at high field for x ≥ 0.5. Large magnetic entropy changes (ΔSM) of ...
The effect of doping on the crystal structure, magnetic, magnetocaloric and transport properties of ...
The impact of B substitution in Ni50Mn35In15-xBx Heusler alloys with x = (0, 0.5, 0.75, 1, 1.1 1.5, ...
The structural, thermal, magnetic, magnetocaloric, and magnetotransport properties of the Heusler al...
The structural, magnetic, magnetocaloric, and transport properties of Ni50Mn35In15-xBix (x = 0, 0.25...
The structural, magnetic, and magnetocaloric properties of the Bi-doped Heusler alloy Ni49BiMn35In15...
The magnetic and magnetocaloric properties of Ni48Co 2Mn35In15 were studied using magnetization and ...
We have studied the magnetic and electrical properties of the polycrystalline ferromagnetic Ni50 Mn3...
The magnetic and magnetocaloric properties of Ni48Co2Mn35In15 were studied using magnetization and h...
"The structural, thermal, and magnetic behaviors, as well as the martensitic phase transformation an...
"The structural, thermal, magnetic, and magnetocaloric properties of Ni50Mn35In14.5B0.5 melt-spun ri...
The structural, magnetic, and magnetotransport properties of Ni50-xCrxMn37In13 Heusler alloys have b...
The effect of substituting Ag for In on the structural, magnetocaloric, and thermomagnetic propertie...
The effect of partial substitution of In by X = Si, Ge and Al on the structural, electrical and magn...
The effects of the partial substitution of Mn by Co on the magnetic, magnetoelastic, and magnetocalo...
The magnetic properties of NiMnGe1−xAlx, Ni50Mn35(In1−xBx)15, Ni50Mn35In14.5B0.5 (Bulk, As-Solidifi...
The effect of doping on the crystal structure, magnetic, magnetocaloric and transport properties of ...
The impact of B substitution in Ni50Mn35In15-xBx Heusler alloys with x = (0, 0.5, 0.75, 1, 1.1 1.5, ...
The structural, thermal, magnetic, magnetocaloric, and magnetotransport properties of the Heusler al...
The structural, magnetic, magnetocaloric, and transport properties of Ni50Mn35In15-xBix (x = 0, 0.25...
The structural, magnetic, and magnetocaloric properties of the Bi-doped Heusler alloy Ni49BiMn35In15...
The magnetic and magnetocaloric properties of Ni48Co 2Mn35In15 were studied using magnetization and ...
We have studied the magnetic and electrical properties of the polycrystalline ferromagnetic Ni50 Mn3...
The magnetic and magnetocaloric properties of Ni48Co2Mn35In15 were studied using magnetization and h...
"The structural, thermal, and magnetic behaviors, as well as the martensitic phase transformation an...
"The structural, thermal, magnetic, and magnetocaloric properties of Ni50Mn35In14.5B0.5 melt-spun ri...
The structural, magnetic, and magnetotransport properties of Ni50-xCrxMn37In13 Heusler alloys have b...
The effect of substituting Ag for In on the structural, magnetocaloric, and thermomagnetic propertie...
The effect of partial substitution of In by X = Si, Ge and Al on the structural, electrical and magn...
The effects of the partial substitution of Mn by Co on the magnetic, magnetoelastic, and magnetocalo...
The magnetic properties of NiMnGe1−xAlx, Ni50Mn35(In1−xBx)15, Ni50Mn35In14.5B0.5 (Bulk, As-Solidifi...
The effect of doping on the crystal structure, magnetic, magnetocaloric and transport properties of ...
The impact of B substitution in Ni50Mn35In15-xBx Heusler alloys with x = (0, 0.5, 0.75, 1, 1.1 1.5, ...
The structural, thermal, magnetic, magnetocaloric, and magnetotransport properties of the Heusler al...