Effect of carbon content on magnetostructural properties of MnGaC
arXiv:1404.1751 · doi:10.1016/j.jmmm.2014.03.052
Abstract
Effect of carbon content on magnetostructural transformation in antiperovskites of the type MnGaC ( = 0.8, 1.0 and 1.05) has been investigated. It is found that, increase in carbon content changes the ground state from ferromagnetic metallic ( = 0.8) to antiferromagnetic semiconducting ( = 1.05) type. This has been attributed to localization of itinerant Mn electrons due to increased Mn - C hybridization. Such a hybridization strengthens Mn-C-Mn antiferromagnetic interactions over Mn-Mn ferromagnetic interactions. Further, magnetic field can be used as a tool to modulate the relative strengths of these ferromagnetic and antiferromagnetic interactions thereby affecting the nature and strength of magnetocaloric properties.
Appearing in Journal of Magnetism and Magnetic Materials
Cited by in corpus (6)
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- Mechanism of magnetostructural transformation in multifunctional MnGaC
- Modulations in magnetostructural coupling in C and Sn deficient MnSnC
- band filling and magnetic phase separation in transition metal-doped MnSnC
- Packing fraction related distortion of MnC octahedra and its effect on the first order magnetic transition in Mn based antiperovskites
- Absence of first order magnetic transition, a curious case of Mn3InC