Exceptionally large transverse thermoelectric effect produced by combining thermoelectric and magnetic materials

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A research team has demonstrated that a simple stack of thermoelectric and magnetic material layers can exhibit a substantially larger transverse thermoelectric effect -- energy conversion between electric and heat currents that flow orthogonally to each other within it -- than existing magnetic materials capable of exhibiting the anomalous Nernst...

Exceptionally large transverse thermoelectric effect produced by combining thermoelectric and magnetic materials." ScienceDaily. ScienceDaily, 13 May 2024. <www.sciencedaily.comNational Institute for Materials Science, Japan. . Exceptionally large transverse thermoelectric effect produced by combining thermoelectric and magnetic materials.

A research team has demonstrated that an iron-based amorphous alloy, widely used as a soft magnetic material in transformers and motors, can be transformed into a 'transverse' ... Researchers have discovered a giant thermoelectric effect in an antiferromagnet. The study shows, surprisingly, that antiferromagnets can have the same value of the anomalous Nernst effect as ...

Scientists have demonstrated a high-performing thermoelectric material in a practical form that can be used in device development. The material -- purified tin selenide in polycrystalline form -- ... A research team devised a new thermoelectric generation mechanism with a hybrid structure composed of thermoelectric and magnetic materials. The team then actually fabricated this structure and ...

 

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Exceptionally large transverse thermoelectric effect produced by combining thermoelectric and magnetic materialsA NIMS research team has demonstrated for the first time ever that a simple stack of thermoelectric and magnetic material layers can exhibit a substantially larger transverse thermoelectric effect—energy conversion between electric and heat currents that flow orthogonally to each other within it—than existing magnetic materials capable of...
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