4.8 Article

A Monomaterial Nernst Thermopile with Hermaphroditic Legs

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Seebeck-driven transverse thermoelectric generation

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Summary: This study utilizes the Seebeck effect to drive transverse thermoelectric generation, which shows great potential for energy harvesting and heat sensing applications, especially with the orthogonal geometry in the heat-to-charge current conversion. By hybridizing Seebeck effect and anomalous Hall effect in a closed circuit comprising thermoelectric and magnetic materials, a similar symmetry to the anomalous Nernst effect can be achieved in transverse thermoelectric generation. The Seebeck-effect-driven transverse thermopower is found to be several orders of magnitude larger than the anomalous-Nernst-effect-driven thermopower, indicating a promising unconventional approach for developing applications of transverse thermoelectric generation.

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