Nanoscale FeS2 (Pyrite) as a Sustainable Thermoelectric Material

被引:34
|
作者
Uhlig, Christian [1 ]
Guenes, Ekrem [1 ]
Schulze, Anne S. [1 ]
Elm, Matthias T. [2 ]
Klar, Peter J. [2 ]
Schlecht, Sabine [1 ]
机构
[1] Univ Giessen, Inst Inorgan & Analyt Chem, D-35392 Giessen, Germany
[2] Univ Giessen, Inst Phys 1, D-35392 Giessen, Germany
关键词
Thermoelectric; pyrite; FeS2; mechanical alloying; doping; THIN-FILMS; TRANSPORT-PROPERTIES; SINGLE-CRYSTALS; SOLID SOLUTIONS; NANOCRYSTALS; GROWTH; NANOPARTICLES; DEPOSITION; SELENIUM; CO;
D O I
10.1007/s11664-014-3065-x
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We have synthesized undoped, Co-doped (up to 5%), and Se-doped (up to 4%) FeS2 materials by mechanical alloying in a planetary ball mill and investigated their thermoelectric properties from room temperature (RT) to 600 K. With decreasing particle size, the undoped FeS2 samples showed higher electrical conductivity, from 0.02 S cm(-1) for particles with 70 nm grain size up to 3.1 S cm(-1) for the sample with grain size of 16 nm. The Seebeck coefficient of the undoped samples showed a decrease with further grinding, from 128 mu V K-1 at RT for the sample with 70-nm grains down to 101 mu V K-1 for the sample with grain size of 16 nm. The thermal conductivity of the 16-nm undoped sample lay within the range from 1.3 W m(-1) K-1 at RT to a minimal value of 1.2 W m(-1) K-1 at 600 K. All doped samples showed improved thermoelectric behavior at 600 K compared with the undoped sample with 16 nm particle size. Cobalt doping modified the p-type semiconducting behavior to n-type and increased the thermal conductivity (2.1 W m(-1) K-1) but improved the electrical conductivity (41 S cm(-1)) and Seebeck coefficient (-129 mu V K-1). Isovalent selenium doping led to a slightly higher thermal conductivity (1.7 W m(-1) K-1) as well as to an improved electrical conductivity (26 S cm(-1)) and Seebeck coefficient (110 mu V K-1). The ZT value of FeS2 was increased by a factor of five by Co doping and by a factor of three by Se doping.
引用
收藏
页码:2362 / 2370
页数:9
相关论文
共 50 条
  • [31] Iron pyrite FeS2 for flexible solar cells
    Rezig, B.
    Dahman, H.
    Kenzari, M.
    Renewable energy, 1992, 2 (02) : 125 - 128
  • [32] THIN PHOTOACTIVE FeS2 (PYRITE) FILMS.
    Chatzitheodorou, G.
    Fiechter, S.
    Koenenkamp, R.
    Kunst, M.
    Jaegermann, W.
    Tributsch, H.
    1600, (21):
  • [33] Photoacoustic characterization of natural mineral pyrite (FeS2)
    P. M. Nikolić
    D. T. Luković
    M. V. Nikolić
    S. Djurić
    S. M. Savić
    A. M. Milovanović
    S. R. ukić
    B. Stamenović
    The European Physical Journal Special Topics, 2008, 153 : 187 - 189
  • [34] Differential adsorption of molybdate and tetrathiomolybdate on pyrite (FeS2)
    Bostick, BC
    Fendorf, S
    Helz, GR
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2003, 37 (02) : 285 - 291
  • [35] ASPECTS OF THE INTERFACIAL ELECTROCHEMISTRY OF SEMICONDUCTOR PYRITE (FES2)
    MISHRA, KK
    OSSEOASARE, K
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1988, 135 (10) : 2502 - 2509
  • [36] Pyrite FeS2 nanostructures: Synthesis, properties and applications
    Qin, Haiying
    Jia, Junkang
    Lin, Longxia
    Ni, Hualiang
    Wang, Mudan
    Meng, Liang
    MATERIALS SCIENCE AND ENGINEERING B-ADVANCED FUNCTIONAL SOLID-STATE MATERIALS, 2018, 236 : 104 - 124
  • [37] Photoeffects in cobalt doped pyrite (FeS2) films
    Hahn-Meitner-Institut, Glienicker Str. 100, D-14109, Berlin, Germany
    Solid State Commun, 5 (235-240):
  • [38] Aqueous and nonaqueous photoelectrochemistry of iron pyrite (FeS2)
    Johansson, Erik
    Tong, Qi
    Young, Eric R.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2014, 248
  • [39] Understanding the Surfaces and Crystal Growth of Pyrite FeS2
    Arrouvel, Corinne
    Eon, Jean-Guillaume
    MATERIALS RESEARCH-IBERO-AMERICAN JOURNAL OF MATERIALS, 2019, 22 (01):
  • [40] Morphological Stability of Pyrite FeS2 Nanocrystals in Water
    Barnard, A. S.
    Russo, S. P.
    JOURNAL OF PHYSICAL CHEMISTRY C, 2009, 113 (14): : 5376 - 5380