Thermoelectric power generation technology has emerged as a clean “heat engine” that can convert heat to electricity. Recently, the discovery of an ultrahigh thermoelectric figure of merit in SnSe crystals has drawn a great deal of attention. In view of their facile processing and scale-up applications, polycrystalline SnSe materials with <i>ZT</i> values comparable to those of the SnSe crystals are greatly desired. Here we achieve a record high <i>ZT</i> value ∼2.1 at 873 K in polycrystalline Sn<sub>1–<i>x</i></sub>Se with Sn vacancies. We demonstrate that the carrier concentration increases by artificially introducing Sn vacancies, contributing significantly to the enhancements of electrical conductivity and thermoelectric power factor. T...
Single crystalline SnSe is one of the most intriguing new thermoelectric materials but the thermoele...
Single crystalline SnSe is one of the most intriguing new thermoelectric materials but the thermoele...
International audienceWe report the evaluation of the thermoelectric performance of polycrystalline ...
© 2021, The Author(s).Thermoelectric materials generate electric energy from waste heat, with conver...
Herein, a high figure of merit (ZT) of ≈1.7 at 823 K is reported in p‐type polycrystalline Cd‐doped ...
SnSe, a wide-bandgap semiconductor, has attracted significant attention from the thermoelectric (TE)...
The simple binary compound SnSe has been reported as a robust thermoelectric material for energy con...
Herein, a high figure of merit (ZT) of ≈1.7 at 823 K is reported in p-type polycrystalline Cd-doped...
Herein, a high figure of merit (ZT) of ≈1.7 at 823 K is reported in p-type polycrystalline Cd-doped...
Herein, a high figure of merit (ZT) of ≈1.7 at 823 K is reported in p-type polycrystalline Cd-doped...
Tin selenide (SnSe) has emerged as a surprising new material with exceptional thermal transport and ...
Thermoelectric materials can directly convert heat and electricity, which is a kind of promising ene...
We report the high thermoelectric performance of p-type polycrystalline SnSe obtained below the phas...
Herein, a high figure of merit (ZT) of ≈1.7 at 823 K is reported in p-type polycrystalline Cd-doped ...
In this study, we report a record peak Figure of Merit (ZT) of 1.36 ± 0.12 in polycrystalline SnSe m...
Single crystalline SnSe is one of the most intriguing new thermoelectric materials but the thermoele...
Single crystalline SnSe is one of the most intriguing new thermoelectric materials but the thermoele...
International audienceWe report the evaluation of the thermoelectric performance of polycrystalline ...
© 2021, The Author(s).Thermoelectric materials generate electric energy from waste heat, with conver...
Herein, a high figure of merit (ZT) of ≈1.7 at 823 K is reported in p‐type polycrystalline Cd‐doped ...
SnSe, a wide-bandgap semiconductor, has attracted significant attention from the thermoelectric (TE)...
The simple binary compound SnSe has been reported as a robust thermoelectric material for energy con...
Herein, a high figure of merit (ZT) of ≈1.7 at 823 K is reported in p-type polycrystalline Cd-doped...
Herein, a high figure of merit (ZT) of ≈1.7 at 823 K is reported in p-type polycrystalline Cd-doped...
Herein, a high figure of merit (ZT) of ≈1.7 at 823 K is reported in p-type polycrystalline Cd-doped...
Tin selenide (SnSe) has emerged as a surprising new material with exceptional thermal transport and ...
Thermoelectric materials can directly convert heat and electricity, which is a kind of promising ene...
We report the high thermoelectric performance of p-type polycrystalline SnSe obtained below the phas...
Herein, a high figure of merit (ZT) of ≈1.7 at 823 K is reported in p-type polycrystalline Cd-doped ...
In this study, we report a record peak Figure of Merit (ZT) of 1.36 ± 0.12 in polycrystalline SnSe m...
Single crystalline SnSe is one of the most intriguing new thermoelectric materials but the thermoele...
Single crystalline SnSe is one of the most intriguing new thermoelectric materials but the thermoele...
International audienceWe report the evaluation of the thermoelectric performance of polycrystalline ...