The influence of power factor enhancement on the superior thermoelectric (TE) performance of Mg2(Si,Sn) is studied based on a comparison with Mg2Si. Doped compounds with compositions of Mg2(Si0.4Sn0.6) are synthesized and the TE properties measured between room temperature and 773 K. Carrier concentration and hall mobilities at room temperature are measured on selected samples. Enhancement of the density-of-states effective mass and mobilities comparable to Mg2Si indicate band convergence in the solid solutions to be the cause of the power factor enhancement. Microstructural analysis shows the presence of secondary Si rich phases while the matrix corresponds to Mg2(Si0.3Sn0.7). A doped compound with this composition is synthesized and exhib...
Current research in thermoelectric materials is focused on increasing the figure of merit ZT=(S2σ/κ)...
Équipe 102 : Surfaces et Spectroscopies ; Équipe 204 : Matériaux à propriétés thermoélectriquesInter...
Équipe 102 : Surfaces et Spectroscopies ; Équipe 204 : Matériaux à propriétés thermoélectriquesInter...
The environmental impact caused by burning fossil fuel is increasing at an alarming rate. During the...
Solid solutions with chemical formula Mg2(Si,Ge,Sn) are promising thermoelectric materials with very...
We have synthesized the complete stoichiometric range of the p-Mg2Si1-xSnx striving for the optimiza...
Mg2Si-Mg2Sn solid solutions are promising thermoelectric materials for vehicle waste-heat recovery o...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
Thermoelectric materials can convert waste or process heat directly into usable electrical energy. T...
International audienceDensity functional and Boltzmann transport theories have been used to investig...
International audienceDensity functional and Boltzmann transport theories have been used to investig...
The development of new intermetallic compounds of solid solutions of the system Mg2Si1-xSnx has been...
The development of new intermetallic compounds of solid solutions of the system Mg2Si1-xSnx has been...
Magnesium silicides are favorable thermoelectric materials considering resource abundance and cost. ...
Current research in thermoelectric materials is focused on increasing the figure of merit ZT=(S2σ/κ)...
Équipe 102 : Surfaces et Spectroscopies ; Équipe 204 : Matériaux à propriétés thermoélectriquesInter...
Équipe 102 : Surfaces et Spectroscopies ; Équipe 204 : Matériaux à propriétés thermoélectriquesInter...
The environmental impact caused by burning fossil fuel is increasing at an alarming rate. During the...
Solid solutions with chemical formula Mg2(Si,Ge,Sn) are promising thermoelectric materials with very...
We have synthesized the complete stoichiometric range of the p-Mg2Si1-xSnx striving for the optimiza...
Mg2Si-Mg2Sn solid solutions are promising thermoelectric materials for vehicle waste-heat recovery o...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
Thermoelectric materials can convert waste or process heat directly into usable electrical energy. T...
International audienceDensity functional and Boltzmann transport theories have been used to investig...
International audienceDensity functional and Boltzmann transport theories have been used to investig...
The development of new intermetallic compounds of solid solutions of the system Mg2Si1-xSnx has been...
The development of new intermetallic compounds of solid solutions of the system Mg2Si1-xSnx has been...
Magnesium silicides are favorable thermoelectric materials considering resource abundance and cost. ...
Current research in thermoelectric materials is focused on increasing the figure of merit ZT=(S2σ/κ)...
Équipe 102 : Surfaces et Spectroscopies ; Équipe 204 : Matériaux à propriétés thermoélectriquesInter...
Équipe 102 : Surfaces et Spectroscopies ; Équipe 204 : Matériaux à propriétés thermoélectriquesInter...