Half-Heusler thermoelectrics: Advances from materials fundamental to device engineering
Author:
Funder
NSF
National Science Foundation
US Army DEVCOM ARL
Publisher
Elsevier BV
Reference160 articles.
1. Advanced Thermoelectric Design: From Materials and Structures to Devices;Shi;Chem. Rev.,2020
2. High-thermoelectric Performance of Nanostructured Bismuth Antimony Telluride Bulk Alloys;Poudel;Science,2008
3. Bismuth Telluride Thermoelectrics with 8% Module Efficiency for Waste Heat Recovery Application;Nozariasbmarz;iScience,2020
4. Grain boundary re-crystallization and sub-nano regions leading to high plateau figure of merit for Bi2Te3 nanoflakes;Liu;Energy Environ. Sci.,2023
5. Interstitial Cu: An Effective Strategy for High Carrier Mobility and High Thermoelectric Performance in GeTe;Yin;Adv. Funct. Mater.,2023
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1. Making High Thermoelectric and Superior Mechanical Performance Nb0.88Hf0.12FeSb Half‐Heusler via Additive Manufacturing;Advanced Science;2024-09-09
2. High-entropy-driven half-Heusler alloys boost thermoelectric performance;Joule;2024-09
3. Multi-source energy harvesting technology using piezoelectric and thermoelectric materials;Energy Harvesting and Storage: Materials, Devices, and Applications XIV;2024-06-07
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