From the related article: The reliable calculation of electronic structures and understanding of electrical properties depends on an accurate model of the crystal structure. Here, we have reinvestigated the crystal structure of the high-zT thermoelectric material tin selenide, SnSe, between 4 and 1000 K using high-resolution neutron powder diffraction. Symmetry analysis reveals the presence of four active structural distortion modes, one of which is found to be active over a relatively wide range of more than ±200 K around the symmetry-breaking Pnma--Cmcm transition at 800~K. Density functional theory calculations on the basis of the experimental structure parameters show that the unusual, step-like temperature dependencies of the electrica...
SnSe has been recently reported as a promising and highly efficient thermoelectric intermetallic all...
Tin sulfide (SnS) and tin selenide (SnSe) are attractive materials for thermoelectric conversion app...
Tin selenide (SnSe) has emerged as a surprising new material with exceptional thermal transport and ...
Motivated by the unprecedented thermoelectric performance of SnSe, we report its band structure calc...
Recently, tin selenide SnSe has attracted extensive attention for the reported excellent thermoelect...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
The interest in improving the thermoelectric response of bulk materials has received a boost after i...
The interest in improving the thermoelectric response of bulk materials has received a boost after i...
We report a comprehensive in-situ phase-change study on polycrystalline SnSe via high-temperature X-...
Tin selenide (SnSe) is a promising thermoelectric material because of its advantageous electronic st...
The recent surge of interest in tin selenide (SnSe) is due to the reported record-high thermoelectri...
The recent surge of interest in tin selenide (SnSe) is due to the reported record-high thermoelectri...
SnSe has been recently reported as a promising and highly efficient thermoelectric intermetallic all...
Tin sulfide (SnS) and tin selenide (SnSe) are attractive materials for thermoelectric conversion app...
Tin selenide (SnSe) has emerged as a surprising new material with exceptional thermal transport and ...
Motivated by the unprecedented thermoelectric performance of SnSe, we report its band structure calc...
Recently, tin selenide SnSe has attracted extensive attention for the reported excellent thermoelect...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
The interest in improving the thermoelectric response of bulk materials has received a boost after i...
The interest in improving the thermoelectric response of bulk materials has received a boost after i...
We report a comprehensive in-situ phase-change study on polycrystalline SnSe via high-temperature X-...
Tin selenide (SnSe) is a promising thermoelectric material because of its advantageous electronic st...
The recent surge of interest in tin selenide (SnSe) is due to the reported record-high thermoelectri...
The recent surge of interest in tin selenide (SnSe) is due to the reported record-high thermoelectri...
SnSe has been recently reported as a promising and highly efficient thermoelectric intermetallic all...
Tin sulfide (SnS) and tin selenide (SnSe) are attractive materials for thermoelectric conversion app...
Tin selenide (SnSe) has emerged as a surprising new material with exceptional thermal transport and ...