Adiabatic transverse thermoelectric conversion enhanced by heat current manipulation in artificially tilted multilayers
Fuyuki Ando, Takamasa Hirai, Hiroto Adachi, Ken-ichi Uchida

TL;DR
This paper demonstrates that by manipulating heat currents in artificially tilted multilayers, transverse thermoelectric conversion efficiency can be significantly enhanced through off-diagonal thermal conductivity effects.
Contribution
The study introduces a novel method of enhancing adiabatic transverse thermoelectric conversion using heat current re-orientation in tilted multilayers, combining experimental observation with theoretical analysis.
Findings
Transverse thermopower increases up to -116.1 μV/K at 45° tilt angle.
Maximum efficiency improves from 3.1% to 8.1% with heat current manipulation.
Off-diagonal thermal conduction induces significant transverse temperature gradients.
Abstract
We phenomenologically formulate and experimentally observe an adiabatic transverse thermoelectric conversion enhanced by a heat current re-orientation in artificially tilted multilayers (ATMLs). By alternately stacking two materials with different thermal conductivities and rotating its multilayered structure with respect to a longitudinal temperature gradient, off-diagonal components in the thermal conductivity tensor are induced. This off-diagonal thermal conduction (ODTC) generates a finite transverse temperature gradient and Seebeck-effect-induced thermopower in the adiabatic condition, which is superposed on the isothermal transverse thermopower driven by the off-diagonal Seebeck effect (ODSE). In this study, we calculate and observe the two-dimensional temperature distribution and the resultant transverse thermopower in ATMLs comprising thermoelectric CoMnGa Heusler alloys…
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Taxonomy
TopicsAdvanced Thermoelectric Materials and Devices · Chemical and Physical Properties of Materials · Machine Learning in Materials Science
