GeTe has attracted extensive attention due to high thermoelectric performance. Herein, we comprehensively investigate the effect of rare earth element (Eu, Gd, Er and Tm) substitutions at Ge site of GeTe on its thermoelectric performance. It is found that the substitution limit of Eu, Gd, Er and Tm at Ge site of GeTe increases from 0.8 to 1.8 mol.% with increasing atomic number. The local magnetic moment arising from the substituted rare earth element enhances the Seebeck coefficient and in turn results in enhanced power factor at the entire measurement temperature range (from 303 to 723 K). Additionally, the increasing substitution limit with increasing atomic number of rare earth element strengthens the mass and strain-field fluctuations,...
High-performance GeTe-based thermoelectrics have been recently attracting growing research interest....
High-performance GeTe-based thermoelectrics have been recently attracting growing research interest....
GeTe is a promising thermoelectric material at medium temperature, but its carrier concentration ten...
GeTe has attracted extensive attention due to high thermoelectric performance. Herein, we comprehens...
GeTe has attracted extensive attention due to high thermoelectric performance. Herein, we comprehens...
Heavy rare-earth element doping can effectively strengthen phonon scattering, suppress the lattice t...
International audienceGeTe, which undergoes phase transition between low symmetric rhombohedral to h...
International audienceA comprehensive study on the thermoelectric effect of Ag substitution in GeTe ...
International audienceA comprehensive study on the thermoelectric effect of Ag substitution in GeTe ...
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...
Conspectus: The ever-growing energy crisis and the deteriorated environment caused by carbon energy ...
Rock-salt structured GeTe has been reckoned as a promising medium temperature thermoelectric materia...
High-performance GeTe-based thermoelectrics have been recently attracting growing research interest....
High-performance GeTe-based thermoelectrics have been recently attracting growing research interest....
High-performance GeTe-based thermoelectrics have been recently attracting growing research interest....
GeTe is a promising thermoelectric material at medium temperature, but its carrier concentration ten...
GeTe has attracted extensive attention due to high thermoelectric performance. Herein, we comprehens...
GeTe has attracted extensive attention due to high thermoelectric performance. Herein, we comprehens...
Heavy rare-earth element doping can effectively strengthen phonon scattering, suppress the lattice t...
International audienceGeTe, which undergoes phase transition between low symmetric rhombohedral to h...
International audienceA comprehensive study on the thermoelectric effect of Ag substitution in GeTe ...
International audienceA comprehensive study on the thermoelectric effect of Ag substitution in GeTe ...
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...
Conspectus: The ever-growing energy crisis and the deteriorated environment caused by carbon energy ...
Rock-salt structured GeTe has been reckoned as a promising medium temperature thermoelectric materia...
High-performance GeTe-based thermoelectrics have been recently attracting growing research interest....
High-performance GeTe-based thermoelectrics have been recently attracting growing research interest....
High-performance GeTe-based thermoelectrics have been recently attracting growing research interest....
GeTe is a promising thermoelectric material at medium temperature, but its carrier concentration ten...