Solid solutions with chemical formula Mg2(Si,Ge,Sn) are promising thermoelectric materials with very good properties for the n-type material but significantly worse for the p-type. For power generation applications good n- and p-type materials are required and it has been shown recently that Li doping can enhance the carrier concentration and improve the thermoelectric properties for p-type Mg2Si1-xSnx. We have investigated the potential of p-type Mg2(Ge,Sn) by optimizing Mg2Ge0.4Sn0.6 using Li as dopant. We were able to achieve high carrier concentrations (1.4 x 10^20 cm-³) and relatively high hole mobilities resulting in high power factors of 1.7 x 10^(-3) Wm^(-1) K^(-2) at 700 K, the highest value reported so far for this class of...
Magnesium-based thermoelectric materials (Mg2X, X=Si, Ge, Sn) have received considerable attention d...
For thermoelectric materials, the synthesis route is—besides composition—the crucial factor governin...
For thermoelectric materials, the synthesis route is—besides composition—the crucial factor governin...
The environmental impact caused by burning fossil fuel is increasing at an alarming rate. During the...
Mg(Sn,Si) and Mg(Sn,Ge) are promising n-type thermoelectric materials with good thermoelectric prop...
Mg(Sn,Si) and Mg(Sn,Ge) are promising n-type thermoelectric materials with good thermoelectric prop...
Thermoelectric materials can convert waste or process heat directly into usable electrical energy. T...
Magnesium silicide and its solid solutions are among the most attractive materials for thermoelectri...
Magnesium silicide and its solid solutions are among the most attractive materials for thermoelectri...
The influence of power factor enhancement on the superior thermoelectric (TE) performance of Mg2(Si,...
Mg2Si-Mg2Sn solid solutions are promising thermoelectric materials for vehicle waste-heat recovery o...
We have synthesized the complete stoichiometric range of the p-Mg2Si1-xSnx striving for the optimiza...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
For thermoelectric materials, the synthesis route is-besides composition-the crucial factor governin...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
Magnesium-based thermoelectric materials (Mg2X, X=Si, Ge, Sn) have received considerable attention d...
For thermoelectric materials, the synthesis route is—besides composition—the crucial factor governin...
For thermoelectric materials, the synthesis route is—besides composition—the crucial factor governin...
The environmental impact caused by burning fossil fuel is increasing at an alarming rate. During the...
Mg(Sn,Si) and Mg(Sn,Ge) are promising n-type thermoelectric materials with good thermoelectric prop...
Mg(Sn,Si) and Mg(Sn,Ge) are promising n-type thermoelectric materials with good thermoelectric prop...
Thermoelectric materials can convert waste or process heat directly into usable electrical energy. T...
Magnesium silicide and its solid solutions are among the most attractive materials for thermoelectri...
Magnesium silicide and its solid solutions are among the most attractive materials for thermoelectri...
The influence of power factor enhancement on the superior thermoelectric (TE) performance of Mg2(Si,...
Mg2Si-Mg2Sn solid solutions are promising thermoelectric materials for vehicle waste-heat recovery o...
We have synthesized the complete stoichiometric range of the p-Mg2Si1-xSnx striving for the optimiza...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
For thermoelectric materials, the synthesis route is-besides composition-the crucial factor governin...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
Magnesium-based thermoelectric materials (Mg2X, X=Si, Ge, Sn) have received considerable attention d...
For thermoelectric materials, the synthesis route is—besides composition—the crucial factor governin...
For thermoelectric materials, the synthesis route is—besides composition—the crucial factor governin...