n-Type Mg3Sb2–xBix alloys have been regarded as promising thermoelectric materials due to their excellent performance and low cost. For practical applications, the thermoelectric performance is not the only factor that should be taken into consideration. In addition, the chemical and thermal stabilities of the thermoelectric material are of equal importance for the module design. Previous studies reported that the Mg3Sb2–xBix alloys were unstable in an ambient environment. In this work, we found that Mg3Sb2–xBix alloys reacted with H2O and O2 at room temperature and formed amorphous Mg(OH)2/MgO and crystalline Bi/Sb. The substantial loss of Mg resulted in a significant deterioration in thermoelectric properties, accompanied by the transitio...
In recent years, bismuth-rich Mg3(Sb1–xBix)2 (x = 0.5–0.8) compositions have generated significant i...
Magnesium-based thermoelectric materials (Mg2X, X=Si, Ge, Sn) have received considerable attention d...
The deployment of thermoelectric materials for deriving an enhanced figure of merit (ZT) for power g...
n-Type Mg3Sb2–xBix alloys have been regarded as promising thermoelectric materials due to their exce...
Mg3Sb2-xBix compounds have recently attracted surging research attention owing to their low cost and...
Over the past years, thermoelectric Mg3Sb2 alloys particularly in n-type conduction, have attracted ...
N-type Mg3Sb2-xBix alloys have been extensively studied in recent years due to their significantly e...
Since the first successful implementation of n-type doping, low-cost Mg3Sb2-xBix alloys have been ra...
Mg_3Sb_2–Mg_3Bi_2 alloys show excellent thermoelectric properties. The benefit of alloying has been ...
Complex structures with versatile chemistry provide considerable chemical tunability of the transpor...
n-type Mg3Sb2-based materials have become a top candidate for efficient thermoelectric applications ...
High performance, low cost, and low toxicity have been the main characteristics associated with magn...
Zintl compounds make excellent thermoelectrics with many opportunities for chemically tuning their e...
Approaching practical thermoelectric devices require high-performance and machinable thermoelectric ...
Thermoelectric Mg3+δ(Sb, Bi)2 Zintls have attracted significant attention because of their high-perf...
In recent years, bismuth-rich Mg3(Sb1–xBix)2 (x = 0.5–0.8) compositions have generated significant i...
Magnesium-based thermoelectric materials (Mg2X, X=Si, Ge, Sn) have received considerable attention d...
The deployment of thermoelectric materials for deriving an enhanced figure of merit (ZT) for power g...
n-Type Mg3Sb2–xBix alloys have been regarded as promising thermoelectric materials due to their exce...
Mg3Sb2-xBix compounds have recently attracted surging research attention owing to their low cost and...
Over the past years, thermoelectric Mg3Sb2 alloys particularly in n-type conduction, have attracted ...
N-type Mg3Sb2-xBix alloys have been extensively studied in recent years due to their significantly e...
Since the first successful implementation of n-type doping, low-cost Mg3Sb2-xBix alloys have been ra...
Mg_3Sb_2–Mg_3Bi_2 alloys show excellent thermoelectric properties. The benefit of alloying has been ...
Complex structures with versatile chemistry provide considerable chemical tunability of the transpor...
n-type Mg3Sb2-based materials have become a top candidate for efficient thermoelectric applications ...
High performance, low cost, and low toxicity have been the main characteristics associated with magn...
Zintl compounds make excellent thermoelectrics with many opportunities for chemically tuning their e...
Approaching practical thermoelectric devices require high-performance and machinable thermoelectric ...
Thermoelectric Mg3+δ(Sb, Bi)2 Zintls have attracted significant attention because of their high-perf...
In recent years, bismuth-rich Mg3(Sb1–xBix)2 (x = 0.5–0.8) compositions have generated significant i...
Magnesium-based thermoelectric materials (Mg2X, X=Si, Ge, Sn) have received considerable attention d...
The deployment of thermoelectric materials for deriving an enhanced figure of merit (ZT) for power g...