4.6 Article Proceedings Paper

Effects of Sc and Y substitution on the structure and thermoelectric properties of Yb14MnSb11

期刊

JOURNAL OF SOLID STATE CHEMISTRY
卷 242, 期 -, 页码 55-61

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jssc.2016.03.015

关键词

Zintl; Thermoelectric material; Chemical pressure; Rare earth compounds

资金

  1. Direct For Mathematical & Physical Scien [0843934] Funding Source: National Science Foundation
  2. Direct For Mathematical & Physical Scien
  3. Division Of Materials Research [1405973] Funding Source: National Science Foundation
  4. Division Of Materials Research [0843934] Funding Source: National Science Foundation

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Yb14MnSb11 is the most efficient bulk p-type thermoelectric material for high temperature applications. Materials with Y and Sc substitutions in Yb14MnSb11 were made both in Sn-flux and by ball milling. These small 3+ rare earth (RE) cations were introduced with the goal of providing chemical pressure on the structure. The RE3+ cation is smaller than Yb2+ and also donates one additional electron to this p-type semiconductor. In Yb14MnSb11 (RE = Sc, Y) the maximum x was about 0.5. X-ray diffraction experiments on the single crystals obtained from Sn-flux showed that Sc preferentially substitutes for Yb (1) and Yb(3), and decreases the size of the unit cell by about 0.3%. Y substitutes on all Yb sites and increases the size of the unit cell by about 0.2%. Samples with Yb(14-x)RExMnSb(11) (x similar to 0.3) were prepared via powder metallurgy and spark plasma sintering for transport and thermal conductivity measurements. Electron microprobe of the Sc-substituted sample showed small regions (<= 1 mu m) containing greater amounts of Sc, and X-ray powder diffraction of the ball milled Sc sample could be fitted as phase pure Yb(14-x)RExMnSb(11). Y-substituted samples showed larger regions of excess Y in electron microprobe, and small amounts of Yb4Sb3 in X-ray powder diffraction. The Sc sample has slightly reduced carrier concentration over optimized Yb14MnSb11, while the Y samples have even lower carrier concentrations. These carrier concentrations lead to comparable resistivity to Yb14MnSb11 in the Sc-substituted material, and higher resistivities in the Y-substituted material. All materials had similar Seebeck coefficients that slightly exceed Yb14MnSb11 at high temperatures, with the Sc-substituted sample having the highest despite having a higher carrier concentration. Sc-substituted samples also had a slightly higher thermal conductivity over the Y-substituted samples, which had comparable thermal conductivity to Yb14MnSb11. The zT values of the Sc and Y substituted samples are similar (zT(1000) (K) similar to 0.8), however below that of Yb14MnSb11 due to the compensation of Seebeck and resistivity. (C) 2016 Elsevier Inc. All rights reserved.

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