In the frame of the current research, the p-type Bi2Te3 doped (GeTe)(0.95)(Bi2Te3)(0.05) alloy composed of hot pressed consolidated submicron structured powder was investigated. The influence of the process parameters (i.e., powder particles size and hot pressing conditions) on both reduction of the lattice thermal conductivity and electronic optimization is described in detail. Very high maximal ZT values of up to similar to 1.6 were obtained and correlated to the microstructural characteristics. Based on the various involved mechanisms, a potential route for further enhancement of the ZT values of the investigated composition is proposed.EC, FP7 PowerDriver Projec
Bismuth telluride is the working material for most Peltier cooling devices and thermoelectric genera...
Ternary alloys of thermoelectric materials Bi–Sb–Te and Bi–Se–Te of molecular formula, Bi0·5Sb1·5Te3...
Thermoelectric compounds based on doped bismuth telluride and its alloys have recently attracted inc...
In the frame of the current research, the p-type Bi2Te3 doped (GeTe)(0.95)(Bi2Te3)(0.05) alloy compo...
The recovery of waste heat through the use of thermoelectric (TE) devices is an attractive solution ...
As a lead-free material, GeTe has drawn growing attention in thermoelectrics, and a figure of merit ...
Solvothermal synthesis and spark plasma sintering were applied to prepare Te-rich Bi₂₋ₓGdₓTe₃₊y comp...
Semiconducting (Bi2Te3)x(Sb2Te3)1 – x alloys are among the best thermoelectric materials available t...
Thesis advisor: Zhifeng RenSolid-state cooling and power generation based on thermoelectric effects ...
This is the final version of the article. Available from AIP via the DOI in this record.In the prese...
The Gd-doped Bi₂Te₃ compounds were prepared by solvothermal synthesis and spark plasma sintering. It...
We report that outstanding thermoelectric performances can be achieved in 7% Bi2Te3 alloyed GeTe whe...
GeTe is a promising thermoelectric material at medium temperature, but its carrier concentration ten...
Thermoelectric materials are able to convert energy between heat and electricity with no moving part...
AbstractBi(2−x)GaxTe2.7Se0.3 (x=0, 0.04, 0.08, 0.12) alloys were fabricated by vacuum melting and ho...
Bismuth telluride is the working material for most Peltier cooling devices and thermoelectric genera...
Ternary alloys of thermoelectric materials Bi–Sb–Te and Bi–Se–Te of molecular formula, Bi0·5Sb1·5Te3...
Thermoelectric compounds based on doped bismuth telluride and its alloys have recently attracted inc...
In the frame of the current research, the p-type Bi2Te3 doped (GeTe)(0.95)(Bi2Te3)(0.05) alloy compo...
The recovery of waste heat through the use of thermoelectric (TE) devices is an attractive solution ...
As a lead-free material, GeTe has drawn growing attention in thermoelectrics, and a figure of merit ...
Solvothermal synthesis and spark plasma sintering were applied to prepare Te-rich Bi₂₋ₓGdₓTe₃₊y comp...
Semiconducting (Bi2Te3)x(Sb2Te3)1 – x alloys are among the best thermoelectric materials available t...
Thesis advisor: Zhifeng RenSolid-state cooling and power generation based on thermoelectric effects ...
This is the final version of the article. Available from AIP via the DOI in this record.In the prese...
The Gd-doped Bi₂Te₃ compounds were prepared by solvothermal synthesis and spark plasma sintering. It...
We report that outstanding thermoelectric performances can be achieved in 7% Bi2Te3 alloyed GeTe whe...
GeTe is a promising thermoelectric material at medium temperature, but its carrier concentration ten...
Thermoelectric materials are able to convert energy between heat and electricity with no moving part...
AbstractBi(2−x)GaxTe2.7Se0.3 (x=0, 0.04, 0.08, 0.12) alloys were fabricated by vacuum melting and ho...
Bismuth telluride is the working material for most Peltier cooling devices and thermoelectric genera...
Ternary alloys of thermoelectric materials Bi–Sb–Te and Bi–Se–Te of molecular formula, Bi0·5Sb1·5Te3...
Thermoelectric compounds based on doped bismuth telluride and its alloys have recently attracted inc...