Publication | Open Access
Low temperature thermoelectric properties of <i>p</i>-type doped single-crystalline SnSe
31
Citations
42
References
2018
Year
Single CrystalsEngineeringThermoelectricsThermal ConductivitySemiconductorsThermodynamicsThermal ConductionMaterials ScienceSnse Single CrystalsThermal TransportPhonon ScatteringSingle-crystalline SnseHigh Temperature MaterialsElectronic MaterialsCondensed Matter PhysicsApplied PhysicsThermoelectric MaterialThermal PropertyThermal Properties
SnSe single crystals have been widely studied lately as a result of their record high ZT and controversial low thermal conductivity. Much research has focused on the high-temperature properties of single crystals and polycrystalline SnSe, but few studies were carried out on the low-temperature properties of doped single-crystalline SnSe. To study the mechanism of the charge carrier and phonon scattering, and to eliminate the ambiguity of the high temperature thermal conductivity measurement, we performed low temperature transport characterization of Na-doped and Ag-doped single-crystalline SnSe by a longitudinal steady-state technique. The electronic transport property measurements suggest that Na is a more efficient p-type dopant in SnSe than Ag. In the thermal conductivity data, we observe pronounced dielectric peak around 10 K with magnitude dependent on the doping level. In the p-type doped samples, we found that our room temperature lattice thermal conductivities (&gt;1.74 W m−1 K−1) are in general higher than those previously reported. Based on these findings, our study implies that the lattice thermal conductivity values of doped and pure single-crystalline SnSe were underestimated.
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