magnetocaloric effect advanced magnetic refrigeration technology temperature
Issue Date:
2004
Publisher:
Physica Status Solidi (B) Basic Research
Citation:
Volume 241, Issue 7, Page 1744-1747
Abstract:
We present the results of an investigation on the magnetocaloric effect in the perovskites of La
0.845Sr0.155M1-xM xO3 (M = Mn, Cu, Co). It is found that there was a large magnetic entropy change, i.e.
a large magneto-caloric effect, in all these samples. Among them, the magnetic entropy change reaches a
maximum value of 2. 67 J/kg K at the applied field of 13.5 kOe for the Cu-doped sample, suggesting that
this material would be a suitable candidate for the advanced magnetic refrigeration technology. The large
magnetic entropy change produced by the abrupt reduction of magnetization is attributed to the strong
coupling between spin and lattice that occurs in the vicinity of the ferromagnetic-paramagnetic transition
temperature (TC) - which is experimentally verified by electron paramagnetic resonance study. ?? 2004
WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.