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AbstractThermoelectric materials may contribute in the near future as new alternative sources of sustainable energy. Unprecedented thermoelectric properties in p-type SnSe single crystals have been recently reported, accompanied by extremely low thermal conductivity in polycrystalline samples. In order to enhance thermoelectric efficiency through proper tuning of this material we report a full structural characterization and evaluation of the thermoelectric properties of novel Ge-doped SnSe prepared by a straightforward arc-melting method, which yields nanostructured polycrystalline samples. Ge does not dope the system in the sense of donating carriers, yet the electrical properties show a semiconductor behavior with resistivity values higher than that of the parent compound, as a consequence of nanostructuration, whereas the Seebeck coefficient is higher and thermal conductivity lower, favorable to a better ZT figure of merit.
Composite material, Materials Science, Article, Thermoelectric effect, Engineering, Electrical resistivity and conductivity, Materials Chemistry, FOS: Electrical engineering, electronic engineering, information engineering, Doping, Crystallite, Electrical and Electronic Engineering, Optoelectronics, Thermoelectric Materials, Thermoelectric, Physics, Phase Change Materials for Data Storage and Photonics, Seebeck coefficient, Engineering physics, Semiconductor, Condensed matter physics, Materials science, Thin-Film Solar Cell Technology, Thermal conductivity, Electrical engineering, Physical Sciences, Metallurgy, Thermoelectric materials, Figure of merit, Thermodynamics
Composite material, Materials Science, Article, Thermoelectric effect, Engineering, Electrical resistivity and conductivity, Materials Chemistry, FOS: Electrical engineering, electronic engineering, information engineering, Doping, Crystallite, Electrical and Electronic Engineering, Optoelectronics, Thermoelectric Materials, Thermoelectric, Physics, Phase Change Materials for Data Storage and Photonics, Seebeck coefficient, Engineering physics, Semiconductor, Condensed matter physics, Materials science, Thin-Film Solar Cell Technology, Thermal conductivity, Electrical engineering, Physical Sciences, Metallurgy, Thermoelectric materials, Figure of merit, Thermodynamics
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