Physical properties of {Ti,Zr,Hf}2Ni2Sn compounds

被引:2
作者
Romaka, V. V. [1 ,2 ]
Rogl, G. [1 ]
Bursikova, V [3 ]
Bursik, J. [4 ]
Michor, H. [5 ]
Grytsiv, A. [1 ]
Bauer, E. [5 ]
Giester, G. [6 ]
Rogl, P. [1 ]
机构
[1] Univ Wien, Inst Mat Chem, Wahringerstr 42, A-1090 Vienna, Austria
[2] Leibniz Inst Solid State & Mat Res Dresden IFW Dr, Helmholtzstr 20, D-01069 Dresden, Germany
[3] Masaryk Univ, Inst Phys Elect, Kotlarska 2, Brno 61137, Czech Republic
[4] Czech Acad Sci, Inst Phys Mat, Zizkova 22, Brno 61662, Czech Republic
[5] TU Wien, Inst Solid State Phys, Wiedner Hauptstr 8-10, A-1040 Vienna, Austria
[6] Univ Wien, Inst Mineral & Crystallog, Althanstr 14, A-1090 Vienna, Austria
关键词
TI-NI-SN; MECHANICAL-PROPERTIES; CRYSTAL-STRUCTURE; PHASE-EQUILIBRIA; THERMAL-EXPANSION; SYSTEM; CONSTITUTION; HF2NI2SN;
D O I
10.1039/d1dt03198h
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Physical properties, i.e. electrical resistivity (4.2-800 K), Seebeck coefficient (300-800 K), specific heat (2-110 K), Vickers hardness and elastic moduli (RT), have been defined for single-phase compounds with slightly nonstoichiometric compositions: Ti2.13Ni2Sn0.87, Zr2.025Ni2Sn0.975, and Hf2.055Ni2Sn0.945. From X-ray single crystal and TEM analyses, Ti2+xNi2Sn1-x, x similar to 0.13(1), is isotypic with the U2Pt2Sn-type (space group P4(2)/mnm, ternary ordered version of the Zr3Al2-type), also adopted by the homologous compounds with Zr and Hf. For all three polycrystalline compounds (relative densities >95%) the electrical resistivity of the samples is metallic-like with dominant scattering from static defects mainly conditioned by off-stoichiometry. Analyses of the specific heat curves C(p)vs. T and C-p/T vs. T-2 reveal Sommerfeld coefficients of gamma Ti2Ni2Sn = 14.3(3) mJ mol(-1) K-2, gamma Zr2Ni2Sn = 10(1) mJ mol(-1) K-2, gamma Hf2Ni2Sn = 9.1(5) mJ mol(-1) K-2 and low-temperature Debye-temperatures: theta LTD = 373(7)K, 357(14)K and 318(10)K. Einstein temperatures were in the range of 130-155 K. Rather low Seebeck coefficients (<15 mu V K-1), power factors (pf < 0.07 mW mK(-2)) and an estimated thermal conductivity of lambda < 148 mW cm(-1) K-1 yield thermoelectric figures of merit ZT < 0.007 at similar to 800 K. Whereas for polycrystalline Zr2Ni2Sn elastic properties were determined by resonant ultrasound spectroscopy (RUS): E = 171 GPa, nu = 0.31, G = 65.5 GPa, and B = 147 GPa, the accelerated mechanical property mapping (XPM) mode was used to map the hardness and elastic moduli of T2Ni2Sn. Above 180 K, Zr2Ni2Sn reveals a quasi-linear expansion with CTE = 15.4 x 10(-6) K-1. The calculated density of states is similar for all three compounds and confirms a metallic type of conductivity. The isosurface of elf shows a spherical shape for Ti/Zr/Hf atoms and indicates their ionic character, while the [Ni2Sn](n-) sublattice reflects localizations around the Ni and Sn atoms with a large somewhat diffuse charge density between the closest Ni atoms.
引用
收藏
页码:361 / 374
页数:14
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