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Barocaloric effect in the magnetocaloric prototype Gd5Si2Ge2
152
Citations
15
References
2012
Year
EngineeringDifferential Scanning CalorimetryMagnetic ResonanceBarocaloric EffectChemistryEntropy ChangeMagnetismHydrostatic PressureThermodynamic ModellingMolecular ThermodynamicsCalorimetric MeasurementsThermophysicsThermodynamicsBiophysicsPhysicsMedicineCalorimetric MethodHydrogenHalogenationChemical Kinetics
We report on calorimetric measurements under hydrostatic pressure that enabled us to determine the barocaloric effect in Gd5Si2Ge2. The values for the entropy change for moderate pressures compare favourably to those corresponding to the magnetocaloric effect in this compound. Entropy data are complemented with direct measurements of the adiabatic pressure-induced temperature change.
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