A joint research team from NIMS and the University of Tokyo has developed a new composite in which three-dimensional nano-interfaces are distributed throughout the material by coating the surfaces of magnetic-insulator powders with a metal and sintering them. Using this structure, the team succeeded in observing thermoelectric conversion driven by spins in an insulator, a phenomenon previously observed only at nanoscale thin-film interfaces, in a macroscale material.
New Composite Material Enables Thermoelectric Conversion in Bulk Materials
A joint research team from NIMS and the University of Tokyo has developed a new composite material that enables thermoelectric conversion driven by spins in an insulator, a breakthrough previously limited to nanoscale thin-film interfaces. This advancement could have implications for energy efficiency technologies in Iran, which is seeking to enhance its scientific and technological capabilities.
👥 Key Players
📰 What Happened
A joint research team from NIMS and the University of Tokyo has developed a new composite material that allows for thermoelectric conversion driven by spins in an insulator. This breakthrough extends a previously limited phenomenon to macroscale materials.
- The new composite material features three-dimensional nano-interfaces.
- Thermoelectric conversion driven by spins was previously only observed in nanoscale thin films.
💡 Why It Matters
📚 Background
Thermoelectric materials convert temperature differences into electrical energy, which is crucial for energy efficiency. Advances in this field can lead to more sustainable energy solutions.
🏷️ Entities Mentioned
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