We have studied the magnetocaloric effect of the (La0.55Bi0.15)Ca0.3MnO3 perovskite. This material shows interesting magnetic properties such as its saturation magnetic moment per formula unit of 3.44 mu(B) and a magnetic order temperature of 230 K. Below this temperature neutron diffraction experiments show anti-ferromagnetic contributions in the main ferromagnetic structure. The measured heat capacity exhibits a broad jump centred at the Curie temperature. By increasing the magnetic field, the jump shifts to higher temperatures, confirming the ferromagnetic character of the transition. From the total entropy we have determined the isothermal magnetic entropy (Delta S-m) and the adiabatic temperature change (Delta T-ad). We found that both magnitudes display peaks centred at 230 K with maximum values of vertical bar Delta S-m vertical bar = 1.1 J/K mol and Delta T-ad = 2.3 K at 9 T applied field. Isothermal measurements of magnetization allow us, through thermodynamic Maxwell relation, to determine the isothermal magnetic entropy. The temperature dependence of Delta S is similar to that obtained from C-p although the values are slightly higher. While these values are modest, it is significant that the magnetocaloric effect extends over a large temperature range, showing a good relative cooling power of 190 J/kg at 3 T applied magnetic field.

Magnetocaloric effect in (La0.55Bi0.15)Ca0.3MnO3 perovskites / J., Gutierrez; J. R., Fernandez; J. M., Barandiaran; I., Orue; Righi, Lara. - In: SENSORS AND ACTUATORS. A, PHYSICAL. - ISSN 0924-4247. - 142:2(2008), pp. 549-553. [10.1016/j.sna.2007.07.025]

Magnetocaloric effect in (La0.55Bi0.15)Ca0.3MnO3 perovskites

RIGHI, Lara
2008-01-01

Abstract

We have studied the magnetocaloric effect of the (La0.55Bi0.15)Ca0.3MnO3 perovskite. This material shows interesting magnetic properties such as its saturation magnetic moment per formula unit of 3.44 mu(B) and a magnetic order temperature of 230 K. Below this temperature neutron diffraction experiments show anti-ferromagnetic contributions in the main ferromagnetic structure. The measured heat capacity exhibits a broad jump centred at the Curie temperature. By increasing the magnetic field, the jump shifts to higher temperatures, confirming the ferromagnetic character of the transition. From the total entropy we have determined the isothermal magnetic entropy (Delta S-m) and the adiabatic temperature change (Delta T-ad). We found that both magnitudes display peaks centred at 230 K with maximum values of vertical bar Delta S-m vertical bar = 1.1 J/K mol and Delta T-ad = 2.3 K at 9 T applied field. Isothermal measurements of magnetization allow us, through thermodynamic Maxwell relation, to determine the isothermal magnetic entropy. The temperature dependence of Delta S is similar to that obtained from C-p although the values are slightly higher. While these values are modest, it is significant that the magnetocaloric effect extends over a large temperature range, showing a good relative cooling power of 190 J/kg at 3 T applied magnetic field.
2008
Magnetocaloric effect in (La0.55Bi0.15)Ca0.3MnO3 perovskites / J., Gutierrez; J. R., Fernandez; J. M., Barandiaran; I., Orue; Righi, Lara. - In: SENSORS AND ACTUATORS. A, PHYSICAL. - ISSN 0924-4247. - 142:2(2008), pp. 549-553. [10.1016/j.sna.2007.07.025]
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/1901163
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 8
  • ???jsp.display-item.citation.isi??? 7
social impact