Forming co-alloying solid solutions has long been considered as an effective strategy for improving thermoelectric performance. Herein, the dense Cu2−x(MnFeNi)xSe (x = 0–0.09) with intrinsically low thermal conductivity was prepared by a melting-ball milling-hot pressing process. The influences of nanostructure and compositional gradient on the microstructure and thermoelectric properties of Cu2Se were evaluated. It was found that the thermal conductivity decreased from 1.54 Wm−1K−1 to 0.64 Wm−1K−1 at 300 K via the phonon scattering mechanisms caused by atomic disorder and nano defects. The maximum zT value for the Cu1.91(MnFeNi)0.09Se sample was 1.08 at 750 K, which was about 27% higher than that of a pristine sample
Thermoelectric figure-of-merit (ZT) of ∼1.6 at 700 °C is achieved in β-phase copper selenide (Cu2Se)...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Metal chalcogenides especially Cu2-xSe has gained much attention in thermoelectric community due to ...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
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...
We report the thermoelectric properties of nanostructured Cu-deficient Cu2Se, which was synthesized ...
Non-stoichiometric Cu2-xSe is one of important thermoelectric candidates for intermediate temperatur...
In the last decade, high-performance Cu2Se thermoelectric materials and devices are attracting incre...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
A facile and high yield synthesis route was developed for the fabrication of bulk nanostructured cop...
Liquid-like ionic conductors in the copper selenide family represent a promising class of thermoelec...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Cu2Se has recently received much attention due to its excellent thermal and electrical transmission ...
Thermoelectric figure-of-merit (ZT) of ∼1.6 at 700 °C is achieved in β-phase copper selenide (Cu2Se)...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Metal chalcogenides especially Cu2-xSe has gained much attention in thermoelectric community due to ...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
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...
We report the thermoelectric properties of nanostructured Cu-deficient Cu2Se, which was synthesized ...
Non-stoichiometric Cu2-xSe is one of important thermoelectric candidates for intermediate temperatur...
In the last decade, high-performance Cu2Se thermoelectric materials and devices are attracting incre...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
A facile and high yield synthesis route was developed for the fabrication of bulk nanostructured cop...
Liquid-like ionic conductors in the copper selenide family represent a promising class of thermoelec...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Cu2Se has recently received much attention due to its excellent thermal and electrical transmission ...
Thermoelectric figure-of-merit (ZT) of ∼1.6 at 700 °C is achieved in β-phase copper selenide (Cu2Se)...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
Metal chalcogenides especially Cu2-xSe has gained much attention in thermoelectric community due to ...