Comparison of magnetocaloric properties of the Mn2−xFexP0.5As0.5 (x = 1.0 and 0.7) compounds

2014 
Abstract The Mn 2− x Fe x P 0.5 As 0.5 compounds ( x  = 0.7 and 1.0) studied exhibit the magnetic phase transitions, which are accompanied by a magnetic entropy change. For x  = 1 the PM–FM transition is of the first order one with a weak (2–3 K) thermal hysteresis in the vicinity of T C  = 275 K. The Mn 1.3 Fe 0.7 P 0.5 As 0.5 compound possesses two magnetic transitions: the second-order PM–FM transition at T C  = 190 K, followed by the FM–AFM transition at T N  = 90 K, leading to normal and inverse magnetocaloric effects, respectively. The maximum values of magnetic entropy change are equal to 17 J kg −1  K −1 in MnFeP 0.5 As 0.5 and 5 J kg −1  K −1 in Mn 1.3 Fe 0.7 P 0.5 As 0.5 for a field change of 5 T. The magnetic entropy changes were calculated using both the isofield magnetization curves versus temperature and the isothermal magnetization curves versus applied magnetic field. The magnetocaloric effect in MnFeAs 0.5 P 0.5 is discussed in the terms of both the thermodynamic Maxwell relation and the Clausius–Clapeyron equation.
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