Driven by materials science development, the thermoelectric performance has been enhanced. However, only increasing the figure of merit to enhance the thermoelectric efficiency becomes more challenging. Here, we combine an enhanced figure of merit and geometry optimization of a device by computer-aided design to achieve a record-high thermoelectric efficiency of 16%. A figure of merit over 2.2 in p-type Ge1−x−yCrxSbyTe alloys is achieved resulting from the convergence of three valence edges induced by Cr doping to enhance the power factor and superlattice precipitates to lower the thermal conductivity. Using finite element analysis simulations, we optimize the geometry of a segmented thermoelectric device made of the as-developed Ge1−x−yCrx...
According to the Mott's relation, the figure-of-merit of a thermoelectric material depends on the ch...
According to the Mott's relation, the figure-of-merit of a thermoelectric material depends on the ch...
GeTe is among the best medium-temperature thermoelectrics. Its high performance originates from band...
Driven by materials science development, the thermoelectric performance has been enhanced. However, ...
Driven by materials science development, the thermoelectric performance has been enhanced. However, ...
Driven by materials science development, the thermoelectric performance has been enhanced. However, ...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
The recovery of waste heat through the use of thermoelectric (TE) devices is an attractive solution ...
Compatible p- and n-type materials are necessary for high-performance GeTe thermoelectric modules, w...
Compatible p- and n-type materials are necessary for high-performance GeTe thermoelectric modules, w...
Thermoelectric energy conversion efficiency is directly related to the temperature difference over w...
A thermoelectric device is a heat engine that directly converts heat into electricity. Many material...
The multivalence bands in GeTe provide an additional handle to manipulate the thermoelectric perform...
According to the Mott's relation, the figure-of-merit of a thermoelectric material depends on the ch...
According to the Mott's relation, the figure-of-merit of a thermoelectric material depends on the ch...
GeTe is among the best medium-temperature thermoelectrics. Its high performance originates from band...
Driven by materials science development, the thermoelectric performance has been enhanced. However, ...
Driven by materials science development, the thermoelectric performance has been enhanced. However, ...
Driven by materials science development, the thermoelectric performance has been enhanced. However, ...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
The recovery of waste heat through the use of thermoelectric (TE) devices is an attractive solution ...
Compatible p- and n-type materials are necessary for high-performance GeTe thermoelectric modules, w...
Compatible p- and n-type materials are necessary for high-performance GeTe thermoelectric modules, w...
Thermoelectric energy conversion efficiency is directly related to the temperature difference over w...
A thermoelectric device is a heat engine that directly converts heat into electricity. Many material...
The multivalence bands in GeTe provide an additional handle to manipulate the thermoelectric perform...
According to the Mott's relation, the figure-of-merit of a thermoelectric material depends on the ch...
According to the Mott's relation, the figure-of-merit of a thermoelectric material depends on the ch...
GeTe is among the best medium-temperature thermoelectrics. Its high performance originates from band...