Thermoelectric materials create an electric potential when subject to a temperature gradient and vice versa hence they can be used to harvest waste heat into electricity and in thermal management applications. However, finding highly efficient thermoelectrics with high figures of merit, zT$\geq$1, is very challenging because the combination of high power factor and low thermal conductivity is rare in materials. Here, we use first-principles methods to analyze the thermoelectric properties of Li$_2$Sn$X_3$ ($X$=S,Se), a recently synthesized class of lithium fast-ion conductors presenting high thermal stability. In p-type Li$_2$Sn$X_3$, we estimate highly flat electronic valence bands that render high Seebeck coefficients exceeding 400 ${\mu}...
Thermoelectric power generation technology has emerged as a clean “heat engine” that can convert hea...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric materials offer an unambiguous solution to the ever-increasing global demand for ener...
Tin sulfide (SnS) and tin selenide (SnSe) are attractive materials for thermoelectric conversion app...
Thermoelectric materials can realize direct energy conversion from heat to electricity based on ther...
The entanglement of lattice thermal conductivity, electrical conductivity, and Seebeck coefficient c...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
The recent surge of interest in tin selenide (SnSe) is due to the reported record-high thermoelectri...
Li<sub>2</sub>SnS<sub>3</sub> is a fast Li<sup>+</sup> ion conductor that exhibits high thermal stab...
The Seebeck coefficient and electrical conductivity are two critical quantities to optimize simultan...
In response to theoretical calculations on the thermoelectric performance of LiZnSb, we report the p...
Superionic thermoelectric materials have been shown to have high figure-of-merits, leading to expect...
This is the final version of the article. Available from AIP via the DOI in this record.In the prese...
Li2SnS3 is a fast Li+ ion conductor that exhibits high thermal stability (mp ∼750 °C) as well as env...
The quality of a thermoelectric material is judged by the size of its temperature de- pendent thermo...
Thermoelectric power generation technology has emerged as a clean “heat engine” that can convert hea...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric materials offer an unambiguous solution to the ever-increasing global demand for ener...
Tin sulfide (SnS) and tin selenide (SnSe) are attractive materials for thermoelectric conversion app...
Thermoelectric materials can realize direct energy conversion from heat to electricity based on ther...
The entanglement of lattice thermal conductivity, electrical conductivity, and Seebeck coefficient c...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
The recent surge of interest in tin selenide (SnSe) is due to the reported record-high thermoelectri...
Li<sub>2</sub>SnS<sub>3</sub> is a fast Li<sup>+</sup> ion conductor that exhibits high thermal stab...
The Seebeck coefficient and electrical conductivity are two critical quantities to optimize simultan...
In response to theoretical calculations on the thermoelectric performance of LiZnSb, we report the p...
Superionic thermoelectric materials have been shown to have high figure-of-merits, leading to expect...
This is the final version of the article. Available from AIP via the DOI in this record.In the prese...
Li2SnS3 is a fast Li+ ion conductor that exhibits high thermal stability (mp ∼750 °C) as well as env...
The quality of a thermoelectric material is judged by the size of its temperature de- pendent thermo...
Thermoelectric power generation technology has emerged as a clean “heat engine” that can convert hea...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric materials offer an unambiguous solution to the ever-increasing global demand for ener...