Dos Reis RD, Caron L, Singh S, Felser C, Nicklas M. Direct and Indirect Determination of the Magnetocaloric Effect in the Heusler Compound Ni1.7Pt0.3MnGa. Entropy . 2021;23(10): 1273.Magnetic shape-memory materials are potential magnetic refrigerants, due the caloric properties of their magnetic-field-induced martensitic transformation. The first-order nature of the martensitic transition may be the origin of hysteresis effects that can hinder practical applications. Moreover, the presence of latent heat in these transitions requires direct methods to measure the entropy and to correctly analyze the magnetocaloric effect. Here, we investigated the magnetocaloric effect in the Heusler material Ni1.7Pt0.3MnGa by combining an indirect approach...
We have studied the magnetocaloric effect (MCE) in the shape-memory Heusler alloy Ni50Mn35In15 by di...
We report on the barocaloric and magnetocaloric effects in a series of low-hysteresis Ni-Mn-In magne...
We report on the barocaloric and magnetocaloric effects in a series of low-hysteresis Ni-Mn-In magne...
Magnetic shape memory materials are potential magnetic refrigerants, due the caloric properties of t...
Magnetic shape memory materials are potential magnetic refrigerants, due the caloric properties of t...
Magnetic shape memory materials are potential magnetic refrigerants, due the caloric properties of t...
Magnetic shape-memory materials are potential magnetic refrigerants, due the caloric properties of t...
The present pulsed high-magnetic-field study on Ni 50Mn35In15 gives an extra insight into the thermo...
For magnetocaloric materials the total entropy diagram S(T) in different magnetic fields is of centr...
"We have studied magnetocaloric properties of a Ni-Mn-In metamagnetic shape-memory alloy especially ...
Direct determinations of the isothermal entropy increment, -¿ST , in the Heusler alloy Ni50CoMn36Sn1...
This is an open access article distributed under the Creative Commons Attribution License.Direct det...
Direct determinations of the isothermal entropy increment, (-Delta S_T), in the Heusler alloy Ni(_{5...
Resumen del trabajo presentado a la 20th International Conference on Solid Compounds of Transition E...
Direct determinations of the isothermal entropy increment, \(-\Delta S_T\), in the Heusler alloy Ni\...
We have studied the magnetocaloric effect (MCE) in the shape-memory Heusler alloy Ni50Mn35In15 by di...
We report on the barocaloric and magnetocaloric effects in a series of low-hysteresis Ni-Mn-In magne...
We report on the barocaloric and magnetocaloric effects in a series of low-hysteresis Ni-Mn-In magne...
Magnetic shape memory materials are potential magnetic refrigerants, due the caloric properties of t...
Magnetic shape memory materials are potential magnetic refrigerants, due the caloric properties of t...
Magnetic shape memory materials are potential magnetic refrigerants, due the caloric properties of t...
Magnetic shape-memory materials are potential magnetic refrigerants, due the caloric properties of t...
The present pulsed high-magnetic-field study on Ni 50Mn35In15 gives an extra insight into the thermo...
For magnetocaloric materials the total entropy diagram S(T) in different magnetic fields is of centr...
"We have studied magnetocaloric properties of a Ni-Mn-In metamagnetic shape-memory alloy especially ...
Direct determinations of the isothermal entropy increment, -¿ST , in the Heusler alloy Ni50CoMn36Sn1...
This is an open access article distributed under the Creative Commons Attribution License.Direct det...
Direct determinations of the isothermal entropy increment, (-Delta S_T), in the Heusler alloy Ni(_{5...
Resumen del trabajo presentado a la 20th International Conference on Solid Compounds of Transition E...
Direct determinations of the isothermal entropy increment, \(-\Delta S_T\), in the Heusler alloy Ni\...
We have studied the magnetocaloric effect (MCE) in the shape-memory Heusler alloy Ni50Mn35In15 by di...
We report on the barocaloric and magnetocaloric effects in a series of low-hysteresis Ni-Mn-In magne...
We report on the barocaloric and magnetocaloric effects in a series of low-hysteresis Ni-Mn-In magne...