Silver bismuth diselenide (AgBiSe2) is an n-type thermoelectric material that exhibits a complex structural phase transition from the hexagonal to cubic phase, while silver antimony diselenide (AgSbSe2) is a p-type thermoelectric material that crystallizes in the cubic phase at all temperatures. Here, we investigate the crystal structure and thermoelectric properties of Ag(Bi,Sb)Se2 solid solution, employing AgBi0.9Sb0.1Se2 and AgBi0.7Sb0.3Se2 as representative samples. The carrier polarity of AgBi0.9Sb0.1Se2 is converted from the n-type to p-type by Pb doping, accompanied by a polymorphic change to the cubic phase. It is difficult to obtain highly conductive p-type hexagonal AgBiSe2-based materials, although first-principles calculations...
The nanostructure of bulk germanium antimony tellurides (GST materials) can be tuned by utilizing p...
We report on the thermoelectric (TE) performance of intrinsic n-type AgBiSe<sub>2</sub>, a Pb-free m...
Defect engineering, achieved by precise tuning of the atomic disorder within crystalline solids, for...
Phase transition generates rapid changes of transport parameters and poor mechanical property, and t...
GeSe is a IV-VI semiconductor, like the excellent thermoelectric materials PbTe and SnSe. Orthorhomb...
Introduction of nonstoichiometry to AgSbTe2-based materials is considered to be an effective way to ...
Introduction of nonstoichiometry to AgSbTe2-based materials is considered to be an effective way to ...
Seebeck coefficients, electrical resistivities, thermal conductivities and figure of merit ZT of Bi2...
Cubic AgSbTe2 compound is a metastable phase within Ag2Te-Sb2Te3 pseudo-binary phase diagram and the...
Self-powered wearable electronics require thermoelectric materials simultaneously with a high dimens...
Partial replacement of Sn with Ag is an effective method to optimize the thermoelectric performance ...
In this paper, we show how the thermoelectric properties can be modified in crystallographic structu...
Many IV–VI semiconductors tend to be good thermoelectric materials, these include all Pb chalcogenid...
Effects of Ag doping and thermal annealing temperature on thermoelectric transport properties of Bi<...
Microstructure has a critical influence on the mechanical and functional properties. For thermoelect...
The nanostructure of bulk germanium antimony tellurides (GST materials) can be tuned by utilizing p...
We report on the thermoelectric (TE) performance of intrinsic n-type AgBiSe<sub>2</sub>, a Pb-free m...
Defect engineering, achieved by precise tuning of the atomic disorder within crystalline solids, for...
Phase transition generates rapid changes of transport parameters and poor mechanical property, and t...
GeSe is a IV-VI semiconductor, like the excellent thermoelectric materials PbTe and SnSe. Orthorhomb...
Introduction of nonstoichiometry to AgSbTe2-based materials is considered to be an effective way to ...
Introduction of nonstoichiometry to AgSbTe2-based materials is considered to be an effective way to ...
Seebeck coefficients, electrical resistivities, thermal conductivities and figure of merit ZT of Bi2...
Cubic AgSbTe2 compound is a metastable phase within Ag2Te-Sb2Te3 pseudo-binary phase diagram and the...
Self-powered wearable electronics require thermoelectric materials simultaneously with a high dimens...
Partial replacement of Sn with Ag is an effective method to optimize the thermoelectric performance ...
In this paper, we show how the thermoelectric properties can be modified in crystallographic structu...
Many IV–VI semiconductors tend to be good thermoelectric materials, these include all Pb chalcogenid...
Effects of Ag doping and thermal annealing temperature on thermoelectric transport properties of Bi<...
Microstructure has a critical influence on the mechanical and functional properties. For thermoelect...
The nanostructure of bulk germanium antimony tellurides (GST materials) can be tuned by utilizing p...
We report on the thermoelectric (TE) performance of intrinsic n-type AgBiSe<sub>2</sub>, a Pb-free m...
Defect engineering, achieved by precise tuning of the atomic disorder within crystalline solids, for...