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Thermoelectric properties of bismuth telluride nanoplate thin films determined using combined infrared spectroscopy and first-principles calculation
- Source :
- Japanese Journal of Applied Physics. 57:06HC02
- Publication Year :
- 2018
- Publisher :
- IOP Publishing, 2018.
-
Abstract
- The thermoelectric properties of bismuth telluride (Bi2Te3) nanoplate thin films were estimated using combined infrared spectroscopy and first-principles calculation, followed by comparing the estimated properties with those obtained using the standard electrical probing method. Hexagonal single-crystalline Bi2Te3 nanoplates were first prepared using solvothermal synthesis, followed by preparing Bi2Te3 nanoplate thin films using the drop-casting technique. The nanoplates were joined by thermally annealing them at 250 °C in Ar (95%)–H2 (5%) gas (atmospheric pressure). The electronic transport properties were estimated by infrared spectroscopy using the Drude model, with the effective mass being determined from the band structure using first-principles calculations based on the density functional theory. The electrical conductivity and Seebeck coefficient obtained using the combined analysis were higher than those obtained using the standard electrical probing method, probably because the contact resistance between the nanoplates was excluded from the estimation procedure of the combined analysis method.
- Subjects :
- 010302 applied physics
Materials science
Physics and Astronomy (miscellaneous)
Annealing (metallurgy)
Solvothermal synthesis
General Engineering
Analytical chemistry
General Physics and Astronomy
Infrared spectroscopy
02 engineering and technology
021001 nanoscience & nanotechnology
01 natural sciences
Drude model
chemistry.chemical_compound
chemistry
Seebeck coefficient
0103 physical sciences
Thermoelectric effect
Bismuth telluride
Thin film
0210 nano-technology
Subjects
Details
- ISSN :
- 13474065 and 00214922
- Volume :
- 57
- Database :
- OpenAIRE
- Journal :
- Japanese Journal of Applied Physics
- Accession number :
- edsair.doi...........dfa996b17f5237aa284ffe9d8b257df8