Advanced thermoelectric technology offers a potential for converting waste industrial heat into useful electricity, and an emission-free method for solid state cooling. Worldwide efforts to find materials with thermoelectric figure of merit, zT values significantly above unity, are frequently focused on crystalline semiconductors with low thermal conductivity. Here we report on Cu_(2−x)Se, which reaches a zT of 1.5 at 1,000 K, among the highest values for any bulk materials. Whereas the Se atoms in Cu_(2−x)Se form a rigid face-centred cubic lattice, providing a crystalline pathway for semiconducting electrons (or more precisely holes), the copper ions are highly disordered around the Se sublattice and are superionic with liquid-like mobilit...
Superionic thermoelectric materials have been shown to have high figure-of-merits, leading to expect...
Mosaic-crystal microstructure is one of the optimal strategies for decoupling and balancing thermal ...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Abstract As a group of emerging liquid‐like thermoelectric materials for waste heat recovery into us...
Liquid-like thermoelectric materials have recently received heightened attentions due to their excep...
Thermoelectric figure-of-merit (ZT) of ∼1.6 at 700 °C is achieved in β-phase copper selenide (Cu2Se)...
Thermoelectric materials require an optimal carrier concentration to maximize electrical transport a...
In the last decade, high-performance CuSe thermoelectric materials and devices are attracting increa...
Liquid-like ionic conductors in the copper selenide family represent a promising class of thermoelec...
Due to the nature of their liquid-like behavior and high dimensionless figure of merit, Cu2X (X = Te...
The superionic conductor Cu_(2−δ)Se has been shown to be a promising thermoelectric at higher temper...
Due to the nature of their liquid-like behavior and high dimensionless figure of merit, Cu X (X = Te...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
Thermoelectric materials are one kind of functional materials which can directly realize the interco...
Superionic thermoelectric materials have been shown to have high figure-of-merits, leading to expect...
Mosaic-crystal microstructure is one of the optimal strategies for decoupling and balancing thermal ...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Abstract As a group of emerging liquid‐like thermoelectric materials for waste heat recovery into us...
Liquid-like thermoelectric materials have recently received heightened attentions due to their excep...
Thermoelectric figure-of-merit (ZT) of ∼1.6 at 700 °C is achieved in β-phase copper selenide (Cu2Se)...
Thermoelectric materials require an optimal carrier concentration to maximize electrical transport a...
In the last decade, high-performance CuSe thermoelectric materials and devices are attracting increa...
Liquid-like ionic conductors in the copper selenide family represent a promising class of thermoelec...
Due to the nature of their liquid-like behavior and high dimensionless figure of merit, Cu2X (X = Te...
The superionic conductor Cu_(2−δ)Se has been shown to be a promising thermoelectric at higher temper...
Due to the nature of their liquid-like behavior and high dimensionless figure of merit, Cu X (X = Te...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
Thermoelectric materials are one kind of functional materials which can directly realize the interco...
Superionic thermoelectric materials have been shown to have high figure-of-merits, leading to expect...
Mosaic-crystal microstructure is one of the optimal strategies for decoupling and balancing thermal ...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...