Articles with "mg3bi2 based" as a keyword



Outstanding Room‐Temperature Thermoelectric Performance of n‐type Mg3Bi2‐Based Compounds Through Synergistically Combined Band Engineering Approaches

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Published in 2024 at "Advanced Functional Materials"

DOI: 10.1002/adfm.202407017

Abstract: Thermoelectric cooling materials based on Bi2Te3 have a long history of unsurpassed performance near room temperature. Recently, research into price‐competitive Mg3(Bi, Sb)2‐based materials are focused on replacing traditional cooling materials. Here, the thermoelectric properties of… read more here.

Keywords: temperature; performance; mg3bi2 based; room temperature ... See more keywords

Miniaturized Mg3Bi2-based thermoelectric cooler for localized electronic thermal management

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Published in 2025 at "Nature Communications"

DOI: 10.1038/s41467-025-63174-y

Abstract: Miniaturized thermoelectric coolers, known for their high cooling power density and rapid thermal response, hold promise for localized thermal management. While traditional thermoelectric coolers have primarily relied on Bi2Te3 alloys, the recent development of n-type… read more here.

Keywords: cooler; thermoelectric cooler; mg3bi2 based; miniaturized mg3bi2 ... See more keywords

High thermoelectric cooling performance of n-type Mg3Bi2-based materials

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Published in 2019 at "Science"

DOI: 10.1126/science.aax7792

Abstract: Thrifty thermoelectric cooling Currently available thermoelectric devices for cooling rely on expensive bismuth telluride. Mao et al. systematically developed a far less expensive n-type magnesium-bismuth–based material with good thermoelectric properties. They built a device that… read more here.

Keywords: bismuth; thermoelectric cooling; type; mg3bi2 based ... See more keywords