The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We demonstrate, through a first-principles lattice-dynamics study, that the high-temperature Cmcm phase is a dynamic average over lower-symmetry minima separated by very small energetic barriers. Compared to the low-temperature Pnma phase, the Cmcm phase displays a phonon softening and enhanced three-phonon scattering, leading to an anharmonic damping of the low-frequency modes and hence the thermal transport. We develop a renormalization scheme to quantify the effect of the soft modes on the calculated properties, and confirm that the anharmonicity is an inherent feature of the Cmcm phase. These results suggest a design concept for thermal insul...
Identifying and understanding the mechanisms behind strong phonon–phonon scattering in condensed mat...
Tin sulfide (SnS) and tin selenide (SnSe) are attractive materials for thermoelectric conversion app...
We revisit the thermoelectric (TE) transport properties of two champion materials, PbTe and SnSe, us...
The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We d...
The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We d...
The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We d...
The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We d...
Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most...
Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most...
Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most...
Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most...
Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most...
SnS and SnSe are isoelectronic materials with a common phase diagram. Recently, SnSe was found to b...
© 2016 American Physical Society.The anharmonic phonon properties of SnSe in the Pnma phase were inv...
Thermoelectric efficiency of SnS and SnSe is reported to peak around the phase transition temperatur...
Identifying and understanding the mechanisms behind strong phonon–phonon scattering in condensed mat...
Tin sulfide (SnS) and tin selenide (SnSe) are attractive materials for thermoelectric conversion app...
We revisit the thermoelectric (TE) transport properties of two champion materials, PbTe and SnSe, us...
The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We d...
The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We d...
The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We d...
The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We d...
Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most...
Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most...
Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most...
Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most...
Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most...
SnS and SnSe are isoelectronic materials with a common phase diagram. Recently, SnSe was found to b...
© 2016 American Physical Society.The anharmonic phonon properties of SnSe in the Pnma phase were inv...
Thermoelectric efficiency of SnS and SnSe is reported to peak around the phase transition temperatur...
Identifying and understanding the mechanisms behind strong phonon–phonon scattering in condensed mat...
Tin sulfide (SnS) and tin selenide (SnSe) are attractive materials for thermoelectric conversion app...
We revisit the thermoelectric (TE) transport properties of two champion materials, PbTe and SnSe, us...