Intrinsically doped samples of YCuTe2 were prepared by solid state reaction of the elements. Based on the differential scanning calorimetry and the high temperature X-ray diffraction analyses, YCuTe2 exhibits a first order phase transition at 440 K from a low-temperature-phase crystallizing in the space group P3m1 to a high-temperature-phase in P3. Above the phase transition temperature, partially ordered Cu atoms become completely disordered in the crystal structure. Small increases to the Cu content are observed to favour the formation of the high temperature phase. We find no indication of superionic Cu ions as for binary copper chalcogenides (e.g., Cu2Se or Cu2Te). All investigated samples exhibit very low thermal conductivities (as low...
Cu2-xS and Cu2-xSe have recently been reported as promising thermoelectric (TE) materials for medium...
Liquid-like thermoelectric materials have recently received heightened attentions due to their excep...
Cu2Te-based materials are a type of superionic conductor belonging to the class of phonon-liquid ele...
Intrinsically doped samples of YCuTe2 were prepared by solid state reaction of the elements. Based o...
Intrinsically doped samples of YCuTe2 were prepared by solid state reaction of the elements. Based o...
Intrinsically doped samples of YCuTe_2 were prepared by solid state reaction of the elements. Based ...
Thermoelectric figure-of-merit (ZT) of ∼1.6 at 700 °C is achieved in β-phase copper selenide (Cu2Se)...
Cu2Te is a superionic conductor that belongs to the Phonon Liquid Electron Crystal class of thermoel...
Advanced thermoelectric technology offers a potential for converting waste industrial heat into usef...
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...
Due to the nature of their liquid-like behavior and high dimensionless figure of merit, Cu X (X = Te...
Abstract As a group of emerging liquid‐like thermoelectric materials for waste heat recovery into us...
In an ever-changing global environment, energy-related issues have become a central feature in the d...
Pavonite homologues, Cux+yBi5-ySe8 (1.2 <= x <= 1.5, 0.1 <= y <= 0.4), in a polycrystalline bulk for...
Cu2-xS and Cu2-xSe have recently been reported as promising thermoelectric (TE) materials for medium...
Liquid-like thermoelectric materials have recently received heightened attentions due to their excep...
Cu2Te-based materials are a type of superionic conductor belonging to the class of phonon-liquid ele...
Intrinsically doped samples of YCuTe2 were prepared by solid state reaction of the elements. Based o...
Intrinsically doped samples of YCuTe2 were prepared by solid state reaction of the elements. Based o...
Intrinsically doped samples of YCuTe_2 were prepared by solid state reaction of the elements. Based ...
Thermoelectric figure-of-merit (ZT) of ∼1.6 at 700 °C is achieved in β-phase copper selenide (Cu2Se)...
Cu2Te is a superionic conductor that belongs to the Phonon Liquid Electron Crystal class of thermoel...
Advanced thermoelectric technology offers a potential for converting waste industrial heat into usef...
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...
Due to the nature of their liquid-like behavior and high dimensionless figure of merit, Cu X (X = Te...
Abstract As a group of emerging liquid‐like thermoelectric materials for waste heat recovery into us...
In an ever-changing global environment, energy-related issues have become a central feature in the d...
Pavonite homologues, Cux+yBi5-ySe8 (1.2 <= x <= 1.5, 0.1 <= y <= 0.4), in a polycrystalline bulk for...
Cu2-xS and Cu2-xSe have recently been reported as promising thermoelectric (TE) materials for medium...
Liquid-like thermoelectric materials have recently received heightened attentions due to their excep...
Cu2Te-based materials are a type of superionic conductor belonging to the class of phonon-liquid ele...