Glasslike versus Crystalline Thermophysical Properties of the Cu-S based Minerals: Tetrahedrite and Colusite

被引:22
作者
Suekuni, Koichiro [1 ]
Tanaka, Hiromi I. [1 ]
Kim, Fiseong S. [1 ]
Umeo, Kazunori [2 ]
Takabatake, Toshiro [1 ,3 ]
机构
[1] Hiroshima Univ, Grad Sch Adv Sci Matter, Dept Quantum Matter, Higashihiroshima, Hiroshima 7398530, Japan
[2] Hiroshima Univ, Nat Sci Ctr Basic Res & Dev, Higashihiroshima, Hiroshima 7398526, Japan
[3] Hiroshima Univ, Inst Adv Mat Res, Higashihiroshima, Hiroshima 7398530, Japan
关键词
RIETVELD REFINEMENT; CU12SB4S13; TENNANTITE; NICKEL; IRON; CO;
D O I
10.7566/JPSJ.84.103601
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We report the thermal conductivity and specific heat measurements at temperatures down to 0.3 and 0.4 K, respectively, for synthetic Cu-S based minerals, namely, tetrahedrite Cu10Zn2Sb4S13 with rattling Cu atoms and colusite Cu23Zn3V2Sn6S32 without the rattling mode. Because both are semiconducting and diamagnetic, thermal conductivity and specific heat are predominated by the lattice contribution. For the tetrahedrite, thermal conductivity exhibits a plateau at approximately 4K and T-1.6 dependence at T < 0.7 K. The specific heat C divided by T-3 displays a broad peak at around 4K, almost identical to the so-called boson peak generally observed in structural glasses. This peak indicates the presence of an optical mode with the characteristic temperature. of 20 K, involving the out-of-plane motion of the threefold-coordinated Cu atom. For the colusite, in contrast, thermal conductivity shows a significant peak at 15K and specific heat reveals an optical mode with a higher. of 90 K. The contrasting behaviors of the two Cu-S based minerals indicate that the out-of-plane motion of Cu in the tetrahedrite is the source of the glasslike thermophysical properties.
引用
收藏
页数:4
相关论文
共 28 条
[21]  
Phillips W. A., 1987, Reports on Progress in Physics, V50, P1657, DOI 10.1088/0034-4885/50/12/003
[22]   Tunable electronic properties and low thermal conductivity in synthetic colusites Cu26-xZnxV2M6S32 (x ≤ 4, M = Ge, Sn) [J].
Suekuni, K. ;
Kim, F. S. ;
Takabatake, T. .
JOURNAL OF APPLIED PHYSICS, 2014, 116 (06)
[23]   High-performance thermoelectric minerals: Colusites Cu26V2M6S32 (M = Ge, Sn) [J].
Suekuni, Koichiro ;
Kim, Fiseong S. ;
Nishiate, Hirotaka ;
Ohta, Michihiro ;
Tanaka, Hiromi I. ;
Takabatake, Toshiro .
APPLIED PHYSICS LETTERS, 2014, 105 (13)
[24]   High-performance thermoelectric mineral Cu12-xNixSb4S13 tetrahedrite [J].
Suekuni, Koichiro ;
Tsuruta, Kojiro ;
Kunii, Masaru ;
Nishiate, Hirotaka ;
Nishibori, Eiji ;
Maki, Sachiko ;
Ohta, Michihiro ;
Yamamoto, Atsushi ;
Koyano, Mikio .
JOURNAL OF APPLIED PHYSICS, 2013, 113 (04)
[25]   Thermoelectric Properties of Mineral Tetrahedrites Cu10Tr2Sb4S13 with Low Thermal Conductivity [J].
Suekuni, Koichiro ;
Tsuruta, Kojiro ;
Ariga, Tomoki ;
Koyano, Mikio .
APPLIED PHYSICS EXPRESS, 2012, 5 (05)
[26]   Phonon-glass electron-crystal thermoelectric clathrates: Experiments and theory [J].
Takabatake, Toshiro ;
Suekuni, Koichiro ;
Nakayama, Tsuneyoshi .
REVIEWS OF MODERN PHYSICS, 2014, 86 (02) :669-716
[27]   THERMAL CONDUCTIVITY AND SPECIFIC HEAT OF NONCRYSTALLINE SOLIDS [J].
ZELLER, RC ;
POHL, RO .
PHYSICAL REVIEW B, 1971, 4 (06) :2029-&
[28]   Lattice Anharmonicity and Thermal Conductivity from Compressive Sensing of First-Principles Calculations [J].
Zhou, Fei ;
Nielson, Weston ;
Xia, Yi ;
Ozolins, Vidvuds .
PHYSICAL REVIEW LETTERS, 2014, 113 (18)