Structures and Phase Transitions of CePdGa: New Variants of the BaHg Structure Type.

New distorted variants of the cubic BaHg structure type have been synthesized in Ga flux. Multiple phases of CePdGa, which include an orthorhombic Pmnin structure (x = 3.21(2)), a rhombohedral R3m structure (x = 3.13(4)), and a cubic Fm3m superstructure (x = 2.69(6)), form preferentially depending o...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 134; no. 31; pp. 12998 - 13010
Autores principales: Francisco, Melanie C., Malliakas, Christos D., Macaluso, Robin T., Prestigiacomo, Joseph, Haldolaarachchige, Neel, Adams, Philip W., Young, David P., Ying Jia, Claus, Helmut, Gray, K. E., Kanatzidis, Mercouri G.
Formato: Artículo
Publicado: American Chemical Society 8/8/2012
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:New distorted variants of the cubic BaHg structure type have been synthesized in Ga flux. Multiple phases of CePdGa, which include an orthorhombic Pmnin structure (x = 3.21(2)), a rhombohedral R3m structure (x = 3.13(4)), and a cubic Fm3m superstructure (x = 2.69(6)), form preferentially depending on reaction cooling rate and isolation temperature. Differential thermal analysis and in situ temperature-dependent powder X-ray diffraction patterns show a reversible phase transition at approximately 640 °C between the low temperature orthorhombic and rhombohedral structures and the high temperature cubic superstructure. Single crystal X-ray diffraction experiments indicate that the general structure of BaHg, including the intersecting planes of a kagomé-type arrangement of Ce atoms, is only slightly distorted in the low temperature phases. A combination of Kondo, crystal electric field, and magnetic frustration effects may be present, resulting in low temperature anomalies in magnetic susceptibility, electrical resistivity, and heat capacity measurements. In addition to CePdGa, the rare earth analogues REPdGa RE = La, Nd, Sm, Tm, and Yb, were successfully synthesized and also crystallize in one of the lower symmetry space groups.