Cu2Se has recently received much attention due to its excellent thermal and electrical transmission characteristics. In this study, Cu2Se compounds were synthesized by vacuum melt-annealing method and sintered by discharge plasma sintering (SPS) in the 793–1093 K temperature range. The effects of SPS temperatures of 793, 893, 993, and 1093 K on the phase composition, microstructure, band structure, and thermoelectric properties of Cu2Se samples, as well as the test stability of Cu2Se at high temperatures were studied. The results show that the sintering temperature affects the thermoelectric properties, microstructure, and energy band structure of Cu2Se compounds. The samples show many component segregations with nano-micron size and irregu...
In the field of thermoelectrics, Cu2Se has attracted extensive attention due to its ultralow lattice...
Superionic Cu2Se-based thermoelectric materials have attracted extensive attention in recent years d...
Superionic CuSe has attracted extensive research interest as a promising thermoelectric material wit...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Lead-free thermoelectric material, copper chalcogenides, have been attracting much interest from man...
The aim of the work was to obtain copper (I) selenide Cu2Se material with excellent thermoelectric p...
We report the thermoelectric properties of nanostructured Cu-deficient Cu2Se, which was synthesized ...
CuCrSe2 compounds were synthesized by mechanical alloying followed by annealing and spark plasma sin...
In the last decade, high-performance Cu2Se thermoelectric materials and devices are attracting incre...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Searching for new-type, eco-friendly, and Earth-abundant thermoelectric materials, which can be used...
Recently, copper chalcogenides have attracted great attention due to their potential application for...
Non-stoichiometric Cu2-xSe is one of important thermoelectric candidates for intermediate temperatur...
With the development of high-temperature thermoelectric materials, especially the superionic copper ...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
In the field of thermoelectrics, Cu2Se has attracted extensive attention due to its ultralow lattice...
Superionic Cu2Se-based thermoelectric materials have attracted extensive attention in recent years d...
Superionic CuSe has attracted extensive research interest as a promising thermoelectric material wit...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Lead-free thermoelectric material, copper chalcogenides, have been attracting much interest from man...
The aim of the work was to obtain copper (I) selenide Cu2Se material with excellent thermoelectric p...
We report the thermoelectric properties of nanostructured Cu-deficient Cu2Se, which was synthesized ...
CuCrSe2 compounds were synthesized by mechanical alloying followed by annealing and spark plasma sin...
In the last decade, high-performance Cu2Se thermoelectric materials and devices are attracting incre...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Searching for new-type, eco-friendly, and Earth-abundant thermoelectric materials, which can be used...
Recently, copper chalcogenides have attracted great attention due to their potential application for...
Non-stoichiometric Cu2-xSe is one of important thermoelectric candidates for intermediate temperatur...
With the development of high-temperature thermoelectric materials, especially the superionic copper ...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
In the field of thermoelectrics, Cu2Se has attracted extensive attention due to its ultralow lattice...
Superionic Cu2Se-based thermoelectric materials have attracted extensive attention in recent years d...
Superionic CuSe has attracted extensive research interest as a promising thermoelectric material wit...