Insights into the Crystal Structure and Thermoelectric Properties of the Zintl Phase Ca9Cd3+x-y M x plus y Sb9 (M = Cu, Zn) System

  • Lee, Junsu
  • Kim, Minkyoung
  • Pi, Ji Hee
  • Choi, Myung-Ho
  • Ok, Kang Min
  • 외 2명
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초록

Four quaternary Zintl phase solid-solutions in the Ca9Cd3+x-y M x+y Sb9 (M = Cu, Zn) system were successfully synthesized, and their crystal structures were characterized by using both powder X-ray and single-crystal X-ray diffractions. All title compounds adopted the Ca9Zn3.1In0.9Sb9-type phase, featuring three-dimensional anionic frameworks composed of tetrahedral [MSb4] and tricoordinated [MSb3] moieties interconnected via vertex-sharing. Detailed structural analyses revealed that various types of partial and mixed occupations existed at the M sites, and the Zn2 site in Ca9Cd2.65(1)Zn1.84(2)Sb9 exhibited a trigonal pyramid geometry, distinct from the simple planar geometry observed in parental Ca9Zn3.1In0.9Sb9. The density of states (DOS) analyses revealed successful p-type doping in the Cu-containing compound, indicated by a shift in the Fermi level and an increase in the hole carrier concentration. Crystal orbital Hamilton population curves displayed optimized interatomic interactions between neighboring anionic elements, maintaining structural stability despite a slight increase in the DOS level. Thermoelectric property measurements were conducted for the first time on the Ca9Zn3.1In0.9Sb9-type phase. The results demonstrated that the Zn-containing compounds exhibited higher Seebeck coefficients and lower thermal conductivities, resulting in larger ZT values compared to the Cu-containing compounds. The highest ZT value of 0.70 at 775 K was observed for Ca9Cd4.05Zn0.45Sb9.

키워드

COMPOUNDS AM(2)SB(2)SRBAEU
제목
Insights into the Crystal Structure and Thermoelectric Properties of the Zintl Phase Ca9Cd3+x-y M x plus y Sb9 (M = Cu, Zn) System
저자
Lee, JunsuKim, MinkyoungPi, Ji HeeChoi, Myung-HoOk, Kang MinLee, Kyu HyoungYou, Tae-Soo
DOI
10.1021/acs.chemmater.4c02740
발행일
2024-12-16
유형
Article
저널명
Chemistry of Materials
37
1
페이지
368 ~ 377