4.7 Article

Complex Structural Disorder in the Zintl Phases Yb10MnSb9 and Yb21Mn4Sb18

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INORGANIC CHEMISTRY
卷 60, 期 9, 页码 6702-6711

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AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.1c00519

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  1. United States Department of Energy, Office of Science, Basic Energy Sciences [DE-SC0008885]
  2. Yb21Mn4Sb18 phase

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The systematic investigation of the Yb-Mn-Sb ternary system resulted in the discovery of the novel phase Yb10MnSb9. The crystal structure was found to be complex and highly disordered, with high values of Seebeck coefficient and semiconductor behavior. Both Yb10MnSb9 and the previously reported Yb21Mn4Sb18 phase exhibit disordered fragments in their structures, indicating similarities in structural chemistry within the system.
A systematic investigation of the ternary system Yb-Mn-Sb led to the discovery of the novel phase Yb10MnSb9. Its crystal structure was characterized by single-crystal X-ray diffraction and found to be complex and highly disordered. The average Yb10MnSb9 structure can be considered to represent a defect modification of the Ca10LiMgSb9 type and to crystallize in the tetragonal P4(2)/mnm space group (No. 136) with four formula units per cell. The structural disorder can be associated with both occupational and positional effects on several Yb and Mn sites. Similar traits were observed for the structure of the recently reported Yb21Mn4Sb18 phase (monoclinic space group C2/c, No. 15), which was reevaluated as part of this study as well. In both structures, distorted Sb-6 octahedra centered by Yb atoms and Sb-4 tetrahedra centered by Mn atoms form disordered fragments, which appear as the hallmark of the structural chemistry in this system. Discussion along the lines of how difficult, and important, it is to distinguish Yb10MnSb9 from the compositionally similar binary Yb11Sb10 and ternary Yb14MnSb11 compounds is also presented. Preliminary transport measurements for polycrystalline Yb10MnSb9 indicate high values of the Seebeck coefficient, approaching 210 mu V K-1 at 600 K, and a semiconducting behavior with a room-temperature resistivity of 114 m Omega cm.

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