(Mn, V, Fe)1.95(P, Si, B), Giant magnetocaloric effect, magnetic properties, Entropy, Low hysteresis.
Magnetocaloric materials, Magnetic properties, Mössbauer spectroscopy, (Mn, Fe)2(P, Si)
Magnetocaloric Materials, antiperovskites, Magnetic properties, Mn3SnC
magnetocaloric effect, magneto-elastic coupling, phase transition, Heat capacity, Elastic strain energy, Latent heat
magnetocaloric materials, (Mn, Fe)2(P, Si), Magnetic properties
X-ray magnetic circular dichroism, Magnetocaloric material, Field-induced magnetic phase transition, Magnetostriction.