Artículos de revistas
Structural, electronic, and magnetic entropy contributions of the orbital order-disorder transition in LaMnO(3)
Fecha
2011Registro en:
PHASE TRANSITIONS, v.84, n.3, p.284-290, 2011
0141-1594
10.1080/01411594.2010.534656
Autor
RAMIREZ, F. E. N.
CUNHA, B. B.
ALVES, W. A.
Jardim, Renato de Figueiredo
Muccillo, Reginaldo
Souza, José Antonio
Institución
Resumen
Measurements of X-ray diffraction, electrical resistivity, and magnetization are reported across the Jahn-Teller phase transition in LaMnO(3). Using a thermodynamic equation, we obtained the pressure derivative of the critical temperature (T(JT)), dT(JT)/dP = -28.3 K GPa(-1). This approach also reveals that 5.7(3)J(mol K)(-1) comes from the volume change and 0.8(2)J(mol K)(-1) from the magnetic exchange interaction change across the phase transition. Around T(JT), a robust increase in the electrical conductivity takes place and the electronic entropy change, which is assumed to be negligible for the majority of electronic systems, was found to be 1.8(3)J(mol K)(-1).