We have performed high-pressure structural, electrical, and thermal property measurements on half-Heusler thermoelectric compound, TiCoSb. High-pressure powder diffraction measurements have been performed in an angle-dispersive geometry using synchrotron x-rays up to 115 GPa using a diamond anvil cell. The results show the cubic crystal structure (F-43m) stable and no pressure induced structural phase transitions were observed over the entire pressure range. The electrical and thermal properties were studied up to 5 GPa using a Paris Edinburgh press equipped with a specialized sample cell assembly. The compressibility, variation of thermal conductivity, Seebeck co-efficient and thermoelectric figure of merit (ZT) for the material are discus...
A half-Heusler (HH) type high entropy alloy (HEA) Ti2NiCoSnSb has been synthesized by a fast powder ...
Thermal management is of vital importance in various modern technologies such as portable electronic...
It has been discussed for a long time that synthetic pressure can effectively optimize thermoelectri...
We have performed high-pressure structural, electrical, and thermal property measurements on half-He...
Phase pure samples of the half-Heusler material TiCoSb were synthesised and investigated. Multi-temp...
Half-Heusler thermoelectric materials are potential candidates for high thermoelectric efficiency. W...
Half-Heusler thermoelectric materials are potential candidates for high thermoelectric efficiency. W...
Half-Heusler compounds have a possibility as a new thermoelectric material due to the large thermoel...
Understanding the high-pressure behavior of transport properties has been a driving force in the stu...
Thermal management is of vital importance in various modern technologies such as portable electronic...
Thermoelectric properties of the half-Heusler phase ScNiSb (space group F 4 ¯ 3m) were st...
Thermoelectric materials offer an ideal solution for the global energy crisis and environmental poll...
Pressure is a fundamental thermodynamic variable that can create exotic materials and modulate trans...
Half-Heuslers (HHs) are promising thermoelectric materials with great compositional flexibility. Her...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...
A half-Heusler (HH) type high entropy alloy (HEA) Ti2NiCoSnSb has been synthesized by a fast powder ...
Thermal management is of vital importance in various modern technologies such as portable electronic...
It has been discussed for a long time that synthetic pressure can effectively optimize thermoelectri...
We have performed high-pressure structural, electrical, and thermal property measurements on half-He...
Phase pure samples of the half-Heusler material TiCoSb were synthesised and investigated. Multi-temp...
Half-Heusler thermoelectric materials are potential candidates for high thermoelectric efficiency. W...
Half-Heusler thermoelectric materials are potential candidates for high thermoelectric efficiency. W...
Half-Heusler compounds have a possibility as a new thermoelectric material due to the large thermoel...
Understanding the high-pressure behavior of transport properties has been a driving force in the stu...
Thermal management is of vital importance in various modern technologies such as portable electronic...
Thermoelectric properties of the half-Heusler phase ScNiSb (space group F 4 ¯ 3m) were st...
Thermoelectric materials offer an ideal solution for the global energy crisis and environmental poll...
Pressure is a fundamental thermodynamic variable that can create exotic materials and modulate trans...
Half-Heuslers (HHs) are promising thermoelectric materials with great compositional flexibility. Her...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...
A half-Heusler (HH) type high entropy alloy (HEA) Ti2NiCoSnSb has been synthesized by a fast powder ...
Thermal management is of vital importance in various modern technologies such as portable electronic...
It has been discussed for a long time that synthetic pressure can effectively optimize thermoelectri...