斯库特绿铁矿
热电效应
化学
热电材料
粉末衍射
体积模量
离子键合
塞贝克系数
氮族元素
复合材料
凝聚态物理
结晶学
材料科学
热力学
离子
有机化学
物理
超导电性
作者
João Elias F. S. Rodrigues,Javier Gainza,Federico Serrano‐Sánchez,Mateus M. Ferrer,Guilherme S.L. Fabris,Júlio R. Sambrano,N. M. Nemes,J. L. Martı́nez,Cătălin Popescu,J. A. Alonso
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2021-04-26
卷期号:60 (10): 7413-7421
被引量:12
标识
DOI:10.1021/acs.inorgchem.1c00682
摘要
Skutterudite-type compounds based on □Co4Sb12 pnictide are promising for thermoelectric application due to their good Seebeck values and high carrier mobility. Filling the 8a voids (in the cubic space group Im3̅) with different elements (alkali, alkali earth, and rare earth) helps to reduce the thermal conductivity and thus increases the thermoelectric performance. A systematic characterization by synchrotron X-ray powder diffraction of different M-filled Co4Sb12 (M = K, Sr, La, Ce, and Yb) skutterudites was carried out under high pressure in the range ∼0–12 GPa. The isothermal equations of state (EOS) were obtained in this pressure range and the Bulk moduli (B0) were calculated for all the filled skutterudites, yielding unexpected results. A lattice expansion due to the filler elements fails in the description of the Bulk moduli. Topochemical studies of the filler site environment exhibited a slight disturbance and an increased ionic character when the filler is incorporated. The mechanical properties by means of Bulk moduli resulted in being sensitive to the presence of filler atoms inside the skutterudite voids, being affected by the covalent/ionic exchange of the Co–Sb and Sb–Sb bonds.
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