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Updated: Jul 16, 2025

Author Spotlight: Advancing Energy Solutions Using Nanocomposites as Processed Thermoelectric Materials
Published on: May 17, 2024
High thermoelectric performance in metallic NiAu alloys via interband scattering
Fabian Garmroudi1, Michael Parzer1, Alexander Riss1
1Institute of Solid State Physics, TU Wien, 1040 Vienna, Austria.
Abstract:
Thermoelectric materials seamlessly convert thermal into electrical energy, making them promising for power generation and cooling applications. Although historically the thermoelectric effect was first discovered in metals, state-of-the-art research focuses on semiconductors. Here, we discover unprecedented thermoelectric performance in metals and realize ultrahigh power factors up to 34 mW m-1 K-2 in binary NiAu1- alloys, more than twice larger than in any bulk material above room temperature, reaching zTmax ∼ 0.5. In metallic NiAu1- alloys, large Seebeck coefficients originate from electron-hole selective scattering of Au s electrons into more localized Ni d states. This intrinsic energy filtering effect owing to the unique band structure yields a strongly energy-dependent carrier mobility. While the metastable nature of the Ni-Au system as well as the high cost of Au pose some constraints for practical applications, our work challenges the common belief that good metals are bad thermoelectrics and presents an auspicious route toward high thermoelectric performance exploiting interband scattering.
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