We report time- and angle-resolved photoemission spectroscopy on SnSe which currently attracts great interest due to its extremely high thermoelectric performance. Laser-assisted photoemission signals are observed within $\pm$20 fs of the pump pulse arrival. Around 30-50 fs after the photoexcitation, the conduction band minima are not populated by the photoexcited electrons while the valence bands are considerably broadened. In going from 90 fs to 550 fs after the photoexcitation, the photoexcited carriers are decayed into the multiple conduction band minima. The observed conduction bands are consistent with the band structure calculations. The multiple conduction minima suggest possibility of high and anisotropic thermoelectric performance...
SnSe is a topical thermoelectric material with a low thermal conductivity which is linked to its uni...
SnSe is a topical thermoelectric material with a low thermal conductivity which is linked to its uni...
SnSe has attracted increasing attention as a promising thermoelectric material. In this work, a hori...
SnSe, a group IV-VI monochalcogenide with layered crystal structure similar to black phosphorus, has...
From the related article: The reliable calculation of electronic structures and understanding of ele...
Stannous selenide is a layered semiconductor that is a polar analog of black phosphorus and of great...
SnSe is a topical thermoelectric material with a low thermal conductivity which is linked to its uni...
The simple binary compound SnSe has been reported as a robust thermoelectric material for energy con...
The interest in improving the thermoelectric response of bulk materials has received a boost after i...
Physical Review Letters. Volume 120, Issue 15, 10 April 2018, Article number 156403.© 2018 American...
Thermoelectric properties of SnSe like the maximum thermoelectric performance and the Lorenz number ...
The interest in improving the thermoelectric response of bulk materials has received a boost after i...
The success of black phosphorus in fast electronic and photonic devices is hindered by its rapid de...
SnSe, a wide-bandgap semiconductor, has attracted significant attention from the thermoelectric (TE)...
High-quality SnSe2 single crystals were successfully synthesized using a temperature gradient method...
SnSe is a topical thermoelectric material with a low thermal conductivity which is linked to its uni...
SnSe is a topical thermoelectric material with a low thermal conductivity which is linked to its uni...
SnSe has attracted increasing attention as a promising thermoelectric material. In this work, a hori...
SnSe, a group IV-VI monochalcogenide with layered crystal structure similar to black phosphorus, has...
From the related article: The reliable calculation of electronic structures and understanding of ele...
Stannous selenide is a layered semiconductor that is a polar analog of black phosphorus and of great...
SnSe is a topical thermoelectric material with a low thermal conductivity which is linked to its uni...
The simple binary compound SnSe has been reported as a robust thermoelectric material for energy con...
The interest in improving the thermoelectric response of bulk materials has received a boost after i...
Physical Review Letters. Volume 120, Issue 15, 10 April 2018, Article number 156403.© 2018 American...
Thermoelectric properties of SnSe like the maximum thermoelectric performance and the Lorenz number ...
The interest in improving the thermoelectric response of bulk materials has received a boost after i...
The success of black phosphorus in fast electronic and photonic devices is hindered by its rapid de...
SnSe, a wide-bandgap semiconductor, has attracted significant attention from the thermoelectric (TE)...
High-quality SnSe2 single crystals were successfully synthesized using a temperature gradient method...
SnSe is a topical thermoelectric material with a low thermal conductivity which is linked to its uni...
SnSe is a topical thermoelectric material with a low thermal conductivity which is linked to its uni...
SnSe has attracted increasing attention as a promising thermoelectric material. In this work, a hori...