Room-temperature plasticity in Ag<sub>2</sub>Te induced by Ag ions hopping. [PDF]
Guo A +11 more
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Pack Cementation Route to Ag<sub>2</sub>Se: Correlating Structure, Phase Formation, and Thermoelectric Performance. [PDF]
Teknetzi A +9 more
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First-Principles Study of Strain Engineering Regulation of SnSe Thermoelectric Properties. [PDF]
Zhang H +5 more
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High Power Density for All-Fe<sub>2</sub>VAl-based Thermoelectric Module by Enhancing the Power Factor of p-type Leg Through Defect-Engineering and Wetting Effect. [PDF]
Tarachand +4 more
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A computational insight of the physical properties of MoSX (X= Cl, Br, I) for green energy applications. [PDF]
Yousuf M +5 more
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Study the characterization and thermoelectrical properties of the polyvinyl alcohol / Polyaniline polymer blend thick films. [PDF]
Morad MA +4 more
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Thermoelectric figure of merit of semiconductor superlattices
Journal of Thermoelectricity, 2021The thermoelectric figure of merit of semiconductor superlattices has been studied in the quasi-classical one-miniband approximation. The change in the relaxation time of current carriers in 2D structures compared to their 3D analogs is taken into account when current carriers are scattered by acoustic phonons, point defects, and nonpolar optical ...
V.S. Zakordonets, I. Sysak
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Thermoelectric figure-of-merit from Peltier cooling
Journal of Applied Physics, 2022We use Peltier cooling to experimentally determine the thermoelectric figure-of-merit of a material, where the maximum temperature depression, ΔTmax, is simply related to Z of a thermocouple. However, for thermocouples comprising good thermoelectric materials with ZT≥1, ΔTmax can be large (≥100 K), making it difficult to assign the measurement to a ...
S. Bhattacharya +4 more
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Thermoelectric figure of merit of superlattices
Applied Physics Letters, 1994We calculate the electrical conductivity, thermopower, and the electronic contribution to the thermal conductivity of a superlattice, with the electric field and the thermal gradient applied parallel to the interfaces. We include the tunneling between quantum wells.
J. O. Sofo, G. D. Mahan
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Thermoelectric figure of merit of composite superlattice systems
Physical Review B, 1995The thermoelectric properties of systems in the form of superlattices have been studied. First, the electrical and thermal conductivities, the thermopowers, and the figures of merit of superlattice structures are given in terms of the bulk parameters of the two constituent materials for conduction both parallel and perpendicular to the superlattice ...
, Lin-Chung, , Reinecke
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