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From direct to inverse giant magnetocaloric effect in Co-doped NiMnGa multifunctional alloys

✍ Scribed by S. Fabbrici; J. Kamarad; Z. Arnold; F. Casoli; A. Paoluzi; F. Bolzoni; R. Cabassi; M. Solzi; G. Porcari; C. Pernechele; F. Albertini


Publisher
Elsevier Science
Year
2011
Tongue
English
Weight
865 KB
Volume
59
Category
Article
ISSN
1359-6454

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✦ Synopsis


We report the magnetic and magnetocaloric properties in Co-doped Ni-Mn-Ga Heusler alloys around the Mn-rich composition Ni 50 Mn 30 Ga 20 . The presence of Co affects profoundly the critical temperatures and alters the exchange interactions of martensite and austenite to different extents; by varying the composition it is possible to tune the critical temperatures and to induce a paramagnetic gap between the magnetically ordered martensite and magnetic austenite, thus giving rise to a reverse magnetostructural transformation. Contrary to the Co-free alloys, the saturation magnetization moment of austenite is strongly enhanced by Co with respect to the martensitic one: thus the magnetocaloric effect turns from direct into inverse. Remarkable values of the magnetic properties related to the magnetocaloric effect, e.g. the saturation magnetization jump at the transformation (DM) and the field dependence of the transformation temperature (dT/dH) are reported, together with high positive values of the isothermal magnetic entropy change (DS). The conditions for enhancing the magnetocaloric properties and triggering the sign reversal of the magnetocaloric effect are discussed.