With the development of high-temperature thermoelectric materials, especially the superionic copper selenide (Cu2−xSe), thermal stability and cycling thermoelectric performance have become a great concern recently. Here we demonstrate that the excellent repeatability of the thermal cycling data of a simple Cu–Se binary system can be obtained. The thermal stability was systematically studied via measuring the thermal-cycling thermoelectric performances of Cu1.97Se samples with different rates of Se evaporation by adopting a simple and controllable method, i.e., the conventional solid-state sintering method. The samples fabricated using the conventional sintering method exhibited an optimized figure of merit of 0.8 at 800 K with very good the...
Copper selenide (Cu Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Polycrystalline Cu2Se bulk materials were synthesized by high-pressure and high-temperature (HPHT) t...
With the development of high-temperature thermoelectric materials, especially the superionic copper ...
In the last decade, high-performance CuSe thermoelectric materials and devices are attracting increa...
Lead-free thermoelectric material, copper chalcogenides, have been attracting much interest from man...
Cu2Se has recently received much attention due to its excellent thermal and electrical transmission ...
The aim of the work was to obtain copper (I) selenide Cu2Se material with excellent thermoelectric p...
Thermoelectric figure-of-merit (ZT) of ∼1.6 at 700 °C is achieved in β-phase copper selenide (Cu2Se)...
Our current work aims to enhance the thermoelectric properties of p-type copper selenide (Cu2Se), a ...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Thermoelectricity is a promising technology that directly converts heat energy into electricity and ...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
In the field of thermoelectrics, CuSe has attracted extensive attention due to its ultralow lattice ...
Superionic CuSe has attracted extensive research interest as a promising thermoelectric material wit...
Copper selenide (Cu Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Polycrystalline Cu2Se bulk materials were synthesized by high-pressure and high-temperature (HPHT) t...
With the development of high-temperature thermoelectric materials, especially the superionic copper ...
In the last decade, high-performance CuSe thermoelectric materials and devices are attracting increa...
Lead-free thermoelectric material, copper chalcogenides, have been attracting much interest from man...
Cu2Se has recently received much attention due to its excellent thermal and electrical transmission ...
The aim of the work was to obtain copper (I) selenide Cu2Se material with excellent thermoelectric p...
Thermoelectric figure-of-merit (ZT) of ∼1.6 at 700 °C is achieved in β-phase copper selenide (Cu2Se)...
Our current work aims to enhance the thermoelectric properties of p-type copper selenide (Cu2Se), a ...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Thermoelectricity is a promising technology that directly converts heat energy into electricity and ...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
In the field of thermoelectrics, CuSe has attracted extensive attention due to its ultralow lattice ...
Superionic CuSe has attracted extensive research interest as a promising thermoelectric material wit...
Copper selenide (Cu Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Polycrystalline Cu2Se bulk materials were synthesized by high-pressure and high-temperature (HPHT) t...