info:eu-repo/semantics/article
Crystal growth and thermoelectric properties of CaMn0.98Nb 0.02O3-δ
Fecha
2013-05-24Registro en:
Alfaruq, Dimas S.; Aguirre, Myriam H.; Otal, Eugenio Hernan; Populoh, S.; Karvonen, L.; et al.; Crystal growth and thermoelectric properties of CaMn0.98Nb 0.02O3-δ; Elsevier; Journal of Crystal Growth; 377; 24-5-2013; 170-177
0022-0248
Autor
Alfaruq, Dimas S.
Aguirre, Myriam H.
Otal, Eugenio Hernan
Populoh, S.
Karvonen, L.
Yoon, S.
Lu, Y.
Deng, G.
Ebbinghaus, S. G.
Weidenkaff, A.
Resumen
Thermoelectric CaMn0.98Nb0.02O3−δ single crystals were grown from sintered polycrystalline material using the traveling-solvent floating zone (TSFZ) method. The floating-zone furnace was operated at overpressure using an Ar/O2 mixture to prevent evaporation during the growth process. Six twin-domain variants were detected with single-crystal X-ray diffraction (XRD) and confirmed by electron diffraction (ED) and high-resolution transmission electron microscopy (HRTEM). The Seebeck coefficient (S) of the single-crystalline material indicates n-type semiconducting behavior. Within 10 KoTo125 K a negative peak in S is observed, known to be characteristic of antiferromagnetic ordering. The ferromagnetic longrange ordering, expected on the basis of double exchange between Mn4+ and doped Mn3+ species, thus appears to remain suppressed in the single-crystalline material.