Javascript must be enabled to continue!
Thermal expansion of skutterudites
View through CrossRef
The current paper gives an overview of the newly obtained thermal expansion coefficients of skutterudites as well as those so far available in literature. Thermal expansion was determined for CoSb3, Pt4Sn4.4Sb7.6, for As- and Ge-based skutterudites as well as for various high-ZT skutterudites (micro- and nanostructured) with didymium (DD) and mischmetal (Mm) as filler atoms in frameworks of (Fe1−xCox)4Sb12 and (Fe1−xNix)4Sb12, and for double and triple-filled skutterudites such as Ca0.07Ba0.23Co3.95Ni0.05Sb12 and Sr0.025Ba0.075Yb0.1Co4Sb12. For low temperatures, a capacitance dilatometer was used (4–300 K), whereas for temperatures 300<T<750 K, a dynamic mechanical analyzer was employed. For a set of Ge-, P-, and Sb-based skutterudites, lattice parameters of single crystals, measured at three different temperatures, were used to derive the thermal expansion coefficient. The semiclassical model of Mukherjee [Phys. Rev. Lett. 76, 1876 (1996)] has been successfully used to quantitatively describe the thermal expansion coefficient in terms of Einstein and Debye temperatures, which compare well with the corresponding results from specific heat, electrical resistivity, or temperature dependent x-ray measurements.
Title: Thermal expansion of skutterudites
Description:
The current paper gives an overview of the newly obtained thermal expansion coefficients of skutterudites as well as those so far available in literature.
Thermal expansion was determined for CoSb3, Pt4Sn4.
4Sb7.
6, for As- and Ge-based skutterudites as well as for various high-ZT skutterudites (micro- and nanostructured) with didymium (DD) and mischmetal (Mm) as filler atoms in frameworks of (Fe1−xCox)4Sb12 and (Fe1−xNix)4Sb12, and for double and triple-filled skutterudites such as Ca0.
07Ba0.
23Co3.
95Ni0.
05Sb12 and Sr0.
025Ba0.
075Yb0.
1Co4Sb12.
For low temperatures, a capacitance dilatometer was used (4–300 K), whereas for temperatures 300<T<750 K, a dynamic mechanical analyzer was employed.
For a set of Ge-, P-, and Sb-based skutterudites, lattice parameters of single crystals, measured at three different temperatures, were used to derive the thermal expansion coefficient.
The semiclassical model of Mukherjee [Phys.
Rev.
Lett.
76, 1876 (1996)] has been successfully used to quantitatively describe the thermal expansion coefficient in terms of Einstein and Debye temperatures, which compare well with the corresponding results from specific heat, electrical resistivity, or temperature dependent x-ray measurements.
Related Results
Thermal Effects in High Compactness CEA Stack
Thermal Effects in High Compactness CEA Stack
Thermal management is a pivotal aspect of stack durability and system operability. Consequently, understanding the thermal mapping within a stack based on its operating conditions ...
Low Thermal Conductivity Skutterudites
Low Thermal Conductivity Skutterudites
AbstractRecent experimental results on semiconductors with the skutterudite crystal structure show that these materials possess attractive transport properties and have a good pote...
Binary and Unfilled Skutterudites from 1957 to 2026
Binary and Unfilled Skutterudites from 1957 to 2026
Besides filled skutterudites with a high figure of merit, unfilled skutterudites also play an important role as thermoelectric materials; furthermore, they are easier to produce an...
Query expansion by relying on the structure of knowledge bases
Query expansion by relying on the structure of knowledge bases
Query expansion techniques aim at improving the results achieved by a user's query by means of introducing new expansion terms, called expansion features. Expansion features introd...
How Severe Plastic Deformation Changes the Mechanical Properties of Thermoelectric Skutterudites and Half Heusler Alloys
How Severe Plastic Deformation Changes the Mechanical Properties of Thermoelectric Skutterudites and Half Heusler Alloys
Thermoelectric leg materials with a high figure of merit, ZT, are the essential basis to build thermoelectric generators, directly converting waste heat into electricity. Skutterud...
Investigation into Additive Manufacturing for Controlling Thermal Expansion in Optical Applications
Investigation into Additive Manufacturing for Controlling Thermal Expansion in Optical Applications
The design of components for the optical industry requires a consideration into the thermal expansion co-efficient of the materials used. Often the body material of an optical syst...
Near-Surface Properties of Europa Constrained by the Galileo PPR Measurements
Near-Surface Properties of Europa Constrained by the Galileo PPR Measurements
NASA's Europa Clipper mission will characterize the current and recent surface activity of the icy-moon Europa through a wide range of remote sensing observations. In particular, t...
Negative thermal expansion of β-Rb<sub>2</sub>SO<sub>4</sub>
Negative thermal expansion of β-Rb<sub>2</sub>SO<sub>4</sub>
Research subject. The low-temperature modification of β-Rb2SO4 sulfate (Pmcn). Aim. Low-temperature study of the thermal expansion of β-Rb2SO4 by high-temperature powder X-ray diff...

