Thermoelectric Characteristics of Permingeatite Compounds Double-Doped with Sn and S

被引:1
作者
Hong, Bong-Ki [1 ]
Kim, Il-Ho [1 ]
机构
[1] Korea Natl Univ Transportat, Coll Engn, Dept Mat Sci & Engn, Chungju 27469, South Korea
关键词
permingeatite; thermoelectric; double doping; COPRECIPITATION SYNTHESIS; PERFORMANCE; CU3SBSE4; TRANSPORT;
D O I
10.3390/ma17194859
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Sn/S double-doped permingeatites, Cu3Sb1-xSnxSe4-ySy (0.02 <= x <= 0.08 and 0.25 <= y <= 0.50) were synthesized, and crystallographic parameters and thermoelectric characteristics were examined as a function of doping level. The lattice parameters of permingeatite were significantly modified by the dual doping of Sn and S, with S doping exerting a greater influence on lattice constants and variations in tetragonality compared to Sn doping. With an increase in the level of Sn doping and a decrease in S doping, the carrier concentration increased, leading to enhanced electrical conductivity, indicative of a degenerate semiconducting state. Conversely, an increase in S doping and a decrease in Sn doping led to a rise in the Seebeck coefficient, demonstrating p-type conductivity characteristics with positive temperature dependence. Additionally, the double doping of Sn and S substantially improved the power factor, with Cu3Sb0.98Sn0.02Se3.75S0.25 exhibiting 1.12 mWm-1K-2 at 623 K, approximately 2.3 times higher than that of undoped permingeatite. The lattice thermal conductivity decreased with increasing temperature, while the electronic thermal conductivity exhibited minimal temperature dependence. Ultimately, the dimensionless figure of merit (ZT) was improved through the double doping of Sn and S, with Cu3Sb0.98Sn0.02Se3.50S0.50 recording a ZT of 0.68 at 623 K, approximately 1.7 times higher than that of pure permingeatite.
引用
收藏
页数:13
相关论文
共 25 条
[1]   Thermoelectric Performance of Sn and Bi Double-Doped Permingeatite [J].
Ahn, Hee-Jae ;
Kim, Il-Ho .
KOREAN JOURNAL OF METALS AND MATERIALS, 2022, 60 (08) :593-600
[2]  
Anthony J.W., 2003, Handbook of Mineralogy, Vol. 1: Elements, Sulfides, V1, P1613
[3]   Tin doped Cu3SbSe4: A stable thermoelectric analogue for the mid-temperature applications [J].
Bhardwaj, Ruchi ;
Bhattacharya, Amrita ;
Tyagi, Kriti ;
Gahtori, Bhasker ;
Chauhan, Nagendra Singh ;
Bathula, Sivaiah ;
Auluck, Sushil ;
Dhar, Ajay .
MATERIALS RESEARCH BULLETIN, 2019, 113 :38-44
[4]   Enhanced Thermoelectric Performance of Cu3SbSe4 Doped with Alkali-Ion (Na and K) [J].
Dou, Yunchen ;
Zhu, Qiqi ;
Du, Yong ;
Xu, Jiayue ;
Li, Di .
ELECTRONIC MATERIALS LETTERS, 2020, 16 (02) :99-105
[5]   Thermoelectric Properties of Doped-Cu3SbSe4 Compounds: A First-Principles Insight [J].
Garcia, Gregorio ;
Palacios, Pablo ;
Cabot, Andreu ;
Wahnon, Perla .
INORGANIC CHEMISTRY, 2018, 57 (12) :7321-7333
[6]   Characterization of Lorenz number with Seebeck coefficient measurement [J].
Kim, Hyun-Sik ;
Gibbs, Zachary M. ;
Tang, Yinglu ;
Wang, Heng ;
Snyder, G. Jeffrey .
APL MATERIALS, 2015, 3 (04)
[7]   Enhanced Electrical Transport and Thermoelectric Properties in Ni Doped Cu3SbSe4 [J].
Kumar, Aparabal ;
Dhama, P. ;
Das, Anish ;
Sarkar, Kalyan Jyoti ;
Banerji, P. .
2ND INTERNATIONAL CONFERENCE ON CONDENSED MATTER AND APPLIED PHYSICS (ICC-2017), 2018, 1953
[8]   Effect of Zn substitution at a Cu site on the transport behavior and thermoelectric properties in Cu3SbSe4 [J].
Kumar, Aparabal ;
Dhama, P. ;
Saini, Deepash S. ;
Banerji, P. .
RSC ADVANCES, 2016, 6 (07) :5528-5534
[9]  
Lee G.E., 2021, Ph.D. Thesis
[10]   Preparation and Investigation of Thermoelectric Properties of Cu3SbS4-Cu3SbSe4 Solid Solutions [J].
Lee, Go-Eun ;
Kim, Il-Ho .
KOREAN JOURNAL OF METALS AND MATERIALS, 2022, 60 (05) :384-390