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Journal ArticleDOI

Thermoelectric properties of n-type nanocrystalline bismuth-telluride-based thin films deposited by flash evaporation

TLDR
In this paper, the thermal conductivity of n-type nanocrystalline bismuth-telluride-based thin films (Bi2.0Te2.7Se0.3) is investigated by a differential 3ω method at room temperature.
Abstract
The thermal conductivity of n-type nanocrystalline bismuth-telluride-based thin films (Bi2.0Te2.7Se0.3) is investigated by a differential 3ω method at room temperature. The nanocrystalline thin films are grown on a glass substrate by a flash evaporation method, followed by hydrogen annealing at 250 °C. The structure of the thin films is studied by means of atomic force microscopy, x-ray diffraction, and energy-dispersive x-ray spectroscopy. The thin films exhibit an average grain size of 60 nm and a cross-plane thermal conductivity of 0.8 W∕m K. The in-plane electrical conductivity and in-plane Seebeck coefficient are also investigated. Assuming that the in-plane thermal conductivity of the thin films is identical to that of the cross-plane direction, the in-plane figure of merit of the thin films is estimated to be ZT=0.7. As compared with a sintered bulk sample with average grain size of 30 μm and nearly the same composition as the thin films, the nanocrystalline thin films show approximately a 50% redu...

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Chemically driven carbon-nanotube-guided thermopower waves

TL;DR: Wave of high power density is realized using a 7-nm cyclotrimethylene trinitramine annular shell around a multiwalled carbon nanotube and is amplified by more than 10(4) times the bulk value, propagating faster than 2 m s(-1), which is identified as a thermopower wave.
Journal ArticleDOI

Fabrication and characterization of bismuth–telluride-based alloy thin film thermoelectric generators by flash evaporation method

TL;DR: In this article, Bismuth-telluride-based alloy thin-film thermoelectric generators are fabricated by a flash evaporation method and the output voltage and the maximum output power near room temperature are estimated as a function of the temperature difference between hot and cold junctions of the thin-filtered generators.
Journal ArticleDOI

Semiconductor Nanocrystals Functionalized with Antimony Telluride Zintl Ions for Nanostructured Thermoelectrics

TL;DR: Characterization of the TE properties of nanostructured TE materials showed that their Seebeck coefficients, electrical and thermal conductivities, and ZT values compared favorably with those of previously reported solution-processed TE materials.
Journal ArticleDOI

Review of current high-ZT thermoelectric materials

TL;DR: In this paper, the experimental and theoretical achievements of seven kinds of thermoelectric materials, including BiTe series, SnSe series, CuSe series and Graphdiyne series, were reviewed.
Journal ArticleDOI

The influence of CNTs on the thermoelectric properties of a CNT/Bi2Te3 composite

TL;DR: In this article, a CNT/Bi 2 Te 3 composites were prepared from composite powders in which CNTs were implanted in the Bi 2 Te3 matrix powders by a novel chemical route.
References
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Journal ArticleDOI

Quantum dot superlattice thermoelectric materials and devices.

TL;DR: It is demonstrated that improved cooling values relative to the conventional bulk (Bi,Sb)2(Se,Te)3thermoelectric materials using a n-type film in a one-leg thermoelectrics device test setup, which cooled the cold junction 43.7 K below the room temperature hot junction temperature of 299.8 K.
Journal ArticleDOI

Thermal conductivity measurement from 30 to 750 K: the 3ω method

TL;DR: An ac technique for measuring the thermal conductivity of dielectric solids between 30 and 750 K is described in this article, which can be applied to bulk amorphous solids and crystals.
Journal ArticleDOI

Heat transport in thin dielectric films

TL;DR: In this article, heat transport in 20-300 nm-thick dielectric films is characterized in the temperature range of 78-400 K using the 3-ω method.
Journal ArticleDOI

Thermal conductivity of a -Si:H thin films

TL;DR: Scattering of phonons at the interface between the a-Si:H film and the substrate places a simple upper limit on the heat transport by long-wavelength phonons and facilitates the comparison of the experimental data to recent numerical solutions of a Kubo formula using harmonic vibrations.
Journal ArticleDOI

Bismuth telluride nanotubes and the effects on the thermoelectric properties of nanotube-containing nanocomposites

TL;DR: In this paper, the authors show that the addition of nanotubes leads to a remarkable decrease in the thermal conductivity with the electrical conductivity much less affected and thus to an increase in the figure of merit of the Bi2Te3-based material.
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